| Literature DB >> 31293557 |
Tamás Marik1, Chetna Tyagi1, Dóra Balázs1, Péter Urbán2, Ágnes Szepesi3, László Bakacsy3, Gábor Endre1, Dávid Rakk1, András Szekeres1, Maria A Andersson4, Heidi Salonen4, Irina S Druzhinina5,6, Csaba Vágvölgyi1, László Kredics1.
Abstract
This study examined the structural diversity and bioactivity of peptaibol compounds produced by species from the phylogenetically separated Longibrachiatum Clade of the filamentous fungal genus Trichoderma, which contains several biotechnologically, agriculturally and clinically important species. HPLC-ESI-MS investigations of crude extracts from 17 species of the Longibrachiatum Clade (T. aethiopicum, T. andinense, T. capillare, T. citrinoviride, T. effusum, T. flagellatum, T. ghanense, T. konilangbra, T. longibrachiatum, T. novae-zelandiae, T. pinnatum, T. parareesei, T. pseudokoningii, T. reesei, T. saturnisporum, T. sinensis, and T. orientale) revealed several new and recurrent 20-residue peptaibols related to trichobrachins, paracelsins, suzukacillins, saturnisporins, trichoaureocins, trichocellins, longibrachins, hyporientalins, trichokonins, trilongins, metanicins, trichosporins, gliodeliquescins, alamethicins and hypophellins, as well as eight 19-residue sequences from a new subfamily of peptaibols named brevicelsins. Non-ribosomal peptide synthetase genes were mined from the available genome sequences of the Longibrachiatum Clade. Their annotation and product prediction were performed in silico and revealed full agreement in 11 out of 20 positions regarding the amino acids predicted based on the signature sequences and the detected amino acids incorporated. Molecular dynamics simulations were performed for structural characterization of four selected peptaibol sequences: paracelsins B, H and their 19-residue counterparts brevicelsins I and IV. Loss of position R6 in brevicelsins resulted in smaller helical structures with higher atomic fluctuation for every residue than the structures formed by paracelsins. We observed the formation of highly bent, almost hairpin-like, helical structures throughout the trajectory, along with linear conformation. Bioactivity tests were performed on the purified peptaibol extract of T. reesei on clinically and phytopathologically important filamentous fungi, mammalian cells, and Arabidopsis thaliana seedlings. Porcine kidney cells and boar spermatozoa proved to be sensitive to the purified peptaibol extract. Peptaibol concentrations ≥0.3 mg ml-1 deterred the growth of A. thaliana. However, negative effects to plants were not detected at concentrations below 0.1 mg ml-1, which could still inhibit plant pathogenic filamentous fungi, suggesting that those peptaibols reported here may have applications for plant protection.Entities:
Keywords: Arabidopsis; Longibrachiatum; Trichoderma; antifungal activity; brevicelsin; mammalian cells; mass spectrometry; peptaibol
Year: 2019 PMID: 31293557 PMCID: PMC6606783 DOI: 10.3389/fmicb.2019.01434
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Trichoderma strains from the Longibrachiatum Clade involved in the study.
| 1773 | CECT 2412 | Longibrachiatum/Orientale | Mushroom compost, Wales | Druzhinina et al., | |
| 1775 | CECT 2937 | Longibrachiatum/Orientale | Antarctica | Kuhls et al., | |
| 1776 | CECT 20105 | Longibrachiatum/Orientale | Biocontrol strain, Spain | Antal et al., | |
| 12546 | UAMH 7956 | Longibrachiatum/Orientale | Bone marrow transplant recipient | Richter et al., | |
| 12556 | UAMH 9573 | Longibrachiatum/Orientale | Peritoneal catheter tip, Canada | Kredics et al., | |
| 22602 | TUCIM 1817 | Longibrachiatum/Orientale | Druzhinina et al., | ||
| 22603 | TUCIM 3421 | Longibrachiatum/Orientale | Sri Lanka | Samuels et al., | |
| 22614 | TUCIM 917, QM6a | Parareesei/Reesei | canvas of US army; Solomon Islands | Reese et al., | |
| 22616 | QM9414 | Parareesei/Reesei | Mutant of QM9123 (which is mutant of QM6a) | Kuhls et al., | |
| 22617 | QM9414 G2 | Parareesei/Reesei | Seiboth et al., | ||
| 22615 | TUCIM 661 | Parareesei/Reesei | Subtropical rain forest; Iguazu Falls, Argentina | Atanasova et al., | |
| 22606 | TUCIM 1267 | Saturnisporum | Italy | Samuels et al., | |
| 22607 | TUCIM 132 | Konilangbra/Sinensis | Uganda | Samuels et al., | |
| 22608 | TUCIM 3350 | Konilangbra/Sinensis | Belayneh Mulaw et al., | ||
| 22609 | TUCIM 527 | Konilangbra/Sinensis | Taiwan | Bissett et al., | |
| 22618 | SJ40 | Citrinoviride/Pseudokoningii | Office bookshelf, settled dust, Espoo, Finland | Castagnoli et al., | |
| 22613 | TUCIM 1277 | Citrinoviride/Pseudokoningii | the bark of | Samuels et al., | |
| 22612 | TUCIM 4158 | Novae-zelandiae/ Saturnisporopsis | Native | Samuels et al., | |
| 22604 | TUCIM 2057 | Hatvani et al., | |||
| 22605 | TUCIM 2883 | Wall of a mushroom growing cellar; Hungary | Hatvani et al., | ||
| 22610 | TUCIM 1291 | Venezuela, high elevation | Samuels et al., | ||
| 22611 | TUCIM 254 | Soil isolation; Himalaya, India | Bissett et al., |
Subclades were defined based on Samuels et al. (.
Considered as lone lineages.
Sequences of the newly identified group A peptaibol compounds from Trichoderma species of the Longibrachiatum Clade and their similarities to known peptaibols available in the “Comprehensive Peptaibiotics Database.”
| Pept-A-Ia | 1922 | 1945 | 984 | 1149 | 774 | 35.35 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Ala | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Trichoaureocin 1d | Brückner et al., |
| Pept-A-Ib | 1922 | 1945 | 984 | 1149 | 774 | 36.88 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Ala | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Brückner et al., | |||
| Pept-A-IIa | 1923 | 1946 | 984.5 | 1149 | 775 | 38.26 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Leclerc et al., | ||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-IIb | 1923 | 1946 | 984.5 | 1149 | 775 | 37.46 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Ala | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Brückner et al., | ||
| Pept-A-IIIa | 1936 | 1959 | 991 | 1149 | 788 | 39.82 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Leclerc et al., | |||||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Brückner et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Huang et al., | |||||||||||||||||||||||||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Kimonyo and Brückner, | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Touati et al., | |||||||||||||||||||||||||||||
| Pept-A-IIIb | 1936 | 1959 | 991 | 1149 | 788 | 38.17 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Leclerc et al., | |||
| Krause et al., | |||||||||||||||||||||||||||||
| Brückner et al., | |||||||||||||||||||||||||||||
| Brückner et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Huang et al., | |||||||||||||||||||||||||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Kimonyo and Brückner, | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-IIIc | 1936 | 1959 | 991 | 1149 | 788 | 39.89 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Tamandegani et al., | ||||||
| Touati et al., | |||||||||||||||||||||||||||||
| Pept-A-IVa | 1936 | 1959 | 991 | 1163 | 774 | 40.21 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Longibrachin A I (Positional isomer of Pept-A-VIIa) | Leclerc et al., | |
| Trichoaureocin 3 | Brückner et al., | ||||||||||||||||||||||||||||
| Trichobrachin II 05, 06 IIb A | Krause et al., | ||||||||||||||||||||||||||||
| Trichokonin VI | Huang et al., | ||||||||||||||||||||||||||||
| Trilongin BI | Mikkola et al., | ||||||||||||||||||||||||||||
| Metanicin A | Kimonyo and Brückner, | ||||||||||||||||||||||||||||
| Gliodeliquescin A | Brückner and Przybylski, | ||||||||||||||||||||||||||||
| Hypophellin 1 | Röhrich et al., | ||||||||||||||||||||||||||||
| Longibrachin A I, Trilongin BI | Tamandegani et al., | ||||||||||||||||||||||||||||
| Pept-A-IVb | 1936 | 1959 | 991 | 1163 | 774 | 40.18 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Krause et al., | |||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-A-Va | 1950 | 1973 | 998 | 1177 | 774 | 40.73 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Trichosporin TS-B-IVc (Position isomer of Pept-A-XVIa) | Iida et al., | ||
| Longibrachin A III | Leclerc et al., | ||||||||||||||||||||||||||||
| Trichoaureocin 5 | Brückner et al., | ||||||||||||||||||||||||||||
| Trichobrachin IIb C | Krause et al., | ||||||||||||||||||||||||||||
| Trichokonin VIII | Huang et al., | ||||||||||||||||||||||||||||
| Trilongin BIII | Mikkola et al., | ||||||||||||||||||||||||||||
| Metanicin C | Kimonyo and Brückner, | ||||||||||||||||||||||||||||
| Hypophellin 5 | Röhrich et al., | ||||||||||||||||||||||||||||
| Longibrachin A III. | Tamandegani et al., | ||||||||||||||||||||||||||||
| Pept-A-Vb | 1950 | 1973 | 998 | 1177 | 774 | 41.40 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Suzukacillin A 11a, A 09 | Krause et al., | ||
| Trichocellin TC-A-V, TC-A-VII | Wada et al., | ||||||||||||||||||||||||||||
| Pept-A-VIa | 1937 | 1960 | 991.5 | 1163 | 775 | 41.46 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Longibrachin B II | Leclerc et al., | ||
| Trilongin CI | Mikkola et al., | ||||||||||||||||||||||||||||
| Hypophellin 2 | Röhrich et al., | ||||||||||||||||||||||||||||
| Longibrachin B II., Trilongin CI. | Tamandegani et al., | ||||||||||||||||||||||||||||
| Pept-A-VIb | 1937 | 1960 | 991.5 | 1163 | 775 | 41.50 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Leclerc et al., | |||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-A-VIIa | 1936 | 1959 | 991 | 1163 | 774 | 41.00 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-A-IVa) | → Pept-A-IVa | |
| Pept-A-VIIb | 1936 | 1959 | 991 | 1163 | 774 | 42.53 | Ac | Aib | Ala | Ala | Aib | Ala | Gln | Aib | Vxx | Ala | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Brückner et al., | ||
| Pept-A-VIIIa | 1950 | 1973 | 998 | 1177 | 774 | 42.29 | Ac | Aib | Ala | Ala | Aib | Ala | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Krause et al., | ||||
| Wada et al., | |||||||||||||||||||||||||||||
| (Brückner et al., | |||||||||||||||||||||||||||||
| Pept-A-VIIIb | 1950 | 1973 | 998 | 1177 | 774 | 42.46 | Ac | Aib | Ala | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Leclerc et al., | |||
| Brückner et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Huang et al., | |||||||||||||||||||||||||||||
| Huang et al., | |||||||||||||||||||||||||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Kimonyo and Brückner, | |||||||||||||||||||||||||||||
| Brückner and Przybylski, | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-IXa | 1950 | 1973 | 998 | 1163 | 788 | 42.76 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Longibrachin A II (Position isomer of Pept-A-XVa and Pept-A-XVIIb) | Leclerc et al., | ||
| Suzukacillin A 10a | Krause et al., | ||||||||||||||||||||||||||||
| Trichoaureocin 4 | Brückner et al., | ||||||||||||||||||||||||||||
| Trichobrachin II 07, 08, 09, IIb B | Krause et al., | ||||||||||||||||||||||||||||
| Trichokonin VII | Huang et al., | ||||||||||||||||||||||||||||
| Trilongin BII | Mikkola et al., | ||||||||||||||||||||||||||||
| Metanicin B | Kimonyo and Brückner, | ||||||||||||||||||||||||||||
| Hypophellin 3 | Röhrich et al., | ||||||||||||||||||||||||||||
| Pept-1951-c | Tamandegani et al., | ||||||||||||||||||||||||||||
| Hyporientalin A | Touati et al., | ||||||||||||||||||||||||||||
| Pept-A-IXb | 1950 | 1973 | 998 | 1163 | 788 | 42.84 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Krause et al., | ||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-A-Xa | 1964 | 1987 | 1005 | 1177 | 788 | 43.28 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Longibrachin A IV (Position isomer of Pept-A-XIVb Pept-A-XVIIa, Pept-A-XXIa, and Pept-XXVa) | Leclerc et al., | |||
| Trichoaureocin 6 | Brückner et al., | ||||||||||||||||||||||||||||
| Trichobrachin II 10, IIb D | Krause et al., | ||||||||||||||||||||||||||||
| Trichokonin IX | Huang et al., | ||||||||||||||||||||||||||||
| Trilongin BIV | Mikkola et al., | ||||||||||||||||||||||||||||
| Metanicin D | Kimonyo and Brückner, | ||||||||||||||||||||||||||||
| Hypophellin 7 | Röhrich et al., | ||||||||||||||||||||||||||||
| Pept-A-Xb | 1964 | 1987 | 1005 | 1177 | 788 | 42.89 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Suzukacillin A 10b, 11b, 13 | Krause et al., | |||
| Trichocellin TC-A-VI, TC-A-VIII | Wada et al., | ||||||||||||||||||||||||||||
| Pept-A-XIa | 1951 | 1974 | 998.5 | 1177 | 775 | 43.60 | Ac | Aib | Ala | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Leclerc et al., | ||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-XIb | 1951 | 1974 | 998.5 | 1177 | 775 | 43.60 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Trilongin CIII (Positional isomer of Pept-A-XIXa) | Mikkola et al., | |||
| Hypophellin 6 | Röhrich et al., | ||||||||||||||||||||||||||||
| Longibrachin B III., Trilongin CIII. | Tamandegani et al., | ||||||||||||||||||||||||||||
| Pept-A-XIc | 1951 | 1974 | 998.5 | 1177 | 775 | 43.62 | Ac | Aib | Ala | Ala | Aib | Ala | Gln | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Leclerc et al., | ||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-A-XII | 1937 | 1960 | 991.5 | 1163 | 775 | 42.81 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | (Positional isomer of Pept-A-VIb) | → Pept-A-VIb | |||
| Pept-A-XIIIa | 1951 | 1974 | 998.5 | 1163 | 789 | 44.14 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Pheol | Longibrachin B III | Leclerc et al., | |||
| Trilongin CII | Mikkola et al., | ||||||||||||||||||||||||||||
| Hypophellin 4 | Röhrich et al., | ||||||||||||||||||||||||||||
| Pept-1952-d | Tamandegani et al., | ||||||||||||||||||||||||||||
| Longibrachin A II., Trilongin BII. | Tamandegani et al., | ||||||||||||||||||||||||||||
| Pept-A-XIIIb | 1951 | 1974 | 998.5 | 1163 | 789 | 44.16 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Pheol | Leclerc et al., | ||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-A-XIVa | 1965 | 1988 | 1005.5 | 1177 | 789 | 44.22 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Ala | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Pheol | Pept-1966-d | Tamandegani et al., | ||||
| Pept-A-XIVb | 1964 | 1987 | 1005 | 1177 | 788 | 44.13 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-Xa, Pept-A-XVIIa, Pept-A-XXIa, and Pept-XXVa) | → Pept-A-Xa | |||
| Pept-A-XVa | 1950 | 1973 | 998 | 1163 | 788 | 45.00 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-IXa and Pept-A-XVIIb) | → Pept-A-IXa | ||
| Pept-A-XVb | 1964 | 1987 | 1005 | 1177 | 788 | 44.74 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pept-1965-c-1, c-2 (Position isomer of Pept-A-XXIb) | Tamandegani et al., | ||||
| Pept-A-XVIa | 1950 | 1973 | 998 | 1177 | 774 | 45.21 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-Va) | → Pept-A-Va | ||
| Pept-A-XVIb | 1950 | 1973 | 998 | 1177 | 774 | 45.33 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Iida et al., | |||||
| Maddau et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-XVIIa | 1964 | 1987 | 1005 | 1177 | 788 | 46.21 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-Xa, Pept-A-XIVb, Pept-A-XXIa, and Pept-XXVa) | → Pept-A-Xa | |||
| Pept-A-XVIIb | 1950 | 1973 | 998 | 1163 | 788 | 46.18 | Ac | Aib | Ala | Aib | Ala | Aib | Ala | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-XVa and Pept-A-IXa) | → Pept-A-IXa | ||
| Pept-A-XVIII | 1978 | 2001 | 1012 | 1191 | 788 | 46.36 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Iida et al., | |||||
| Leclerc et al., | |||||||||||||||||||||||||||||
| Brückner et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Huang et al., | |||||||||||||||||||||||||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Kimonyo and Brückner, | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Pept-A-XIXa | 1951 | 1974 | 998.5 | 1177 | 775 | 46.67 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | (Positional isomer of Pept-A-XIb) | → Pept-A-XIb | |||
| Pept-A-XIXb | 1951 | 1974 | 998.5 | 1177 | 775 | 46.86 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Gly | Aib | Pro | Vxx | Aib | Gln | Pheol | Iida et al., | |||||
| Maddau et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-XX | 1964 | 1987 | 1005 | 1191 | 774 | 47.30 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Iida et al., | ||||
| Leclerc et al., | |||||||||||||||||||||||||||||
| Brückner et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Huang et al., | |||||||||||||||||||||||||||||
| Iida et al., | |||||||||||||||||||||||||||||
| Mikkola et al., | |||||||||||||||||||||||||||||
| Kimonyo and Brückner, | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Tamandegani et al., | |||||||||||||||||||||||||||||
| Pept-A-XXIa | 1964 | 1987 | 1005 | 1177 | 788 | 47.85 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-Xa, Pept-A-XIVb, Pept-A-XVIIa, and Pept-XXVa) | → Pept-A-Xa | |||
| Pept-A-XXIb | 1964 | 1987 | 1005 | 1177 | 788 | 47.75 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Ala | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-XVb) | → Pept-A-XVb | |||
| Pept-A-XXIIa | 1964 | 1987 | 1005 | 1191 | 774 | 48.93 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | → Pept-A-XX | ||||
| Pept-A-XXIIb | 1964 | 1987 | 1005 | 1191 | 774 | 48.79 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Trichosporin TS-B-VIa | Iida et al., | |||
| Maddau et al., | |||||||||||||||||||||||||||||
| Pept-A-XXIII | 1965 | 1988 | 1005.5 | 1177 | 789 | 49.13 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Pheol | Trilongin CIV (Positional isomer of Pept-A-XXVIIa) | Mikkola et al., | ||||
| Hypophellin 8 | Röhrich et al., | ||||||||||||||||||||||||||||
| Pept-A-XXIV | 1978 | 2001 | 1012 | 1191 | 788 | 49.89 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-XVIII and Pept-XXVI) | → Pept-A-XVIII | ||||
| Pept-A-XXVa | 1964 | 1987 | 1005 | 1177 | 788 | 49.65 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-Xa, Pept-A-XIVb, Pept-A-XVIIa, and Pept-XXIa) | → Pept-A-Xa | |||
| Pept-A-XXVb | 1978 | 2001 | 1012 | 1191 | 788 | 49.72 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Suzukacillin A 12 (Position isomer of Pept-A-XXVIb and Pept-XXVIIb) | Krause et al., | ||||
| Pept-A-XXVIa | 1978 | 2001 | 1012 | 1191 | 788 | 51.29 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-XVIII and Pept-XXIV) | → Pept-A-XVIII | ||||
| Pept-A-XXVIb | 1978 | 2001 | 1012 | 1191 | 788 | 50.85 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-XXVb and Pept-XXVIIb) | → Pept-A-XVb | ||||
| Pept-A-XXVIIa | 1965 | 1988 | 1005.5 | 1177 | 789 | 51.44 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Vxx | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Pheol | (Positional isomer of Pept-A-XXIII) | → Pept-A-XXIII | ||||
| Pept-A-XXVIIb | 1978 | 2001 | 1012 | 1191 | 788 | 51.59 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Gly | Lxx | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Position isomer of Pept-A-XXVb and Pept-XXVIb) | → Pept-A-XVb |
Variable residues are UNDERLINED in the table header; minor sequence variants are UNDERLINED in the sequences. Amino acid exchanges in new compounds are set in italic.
Sequences of the newly identified group B peptaibol compounds from Trichoderma species of the Longibrachiatum Clade and their similarities to known peptaibols available in the “Comprehensive Peptaibiotics Database.”
| Pept-B-I | 1908 | 1931 | 977 | 1135 | 774 | 22.59 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | |||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-II | 1908 | 1931 | 977 | 1135 | 774 | 24.79 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | → Pept-B-I | |||
| Pept-B-III | 1908 | 1931 | 977 | 1135 | 774 | 25.62 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | → Pept-B-I | |||
| Pept-B-IV | 1922 | 1945 | 984 | 1135 | 788 | 25.72 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | ||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-V | 1908 | 1931 | 977 | 1135 | 774 | 26.35 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | → Pept-B-I | |||
| Pept-B-VI | 1922 | 1945 | 984 | 1149 | 774 | 27.22 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Paracelsin B (Positional isomer of Pept-B-XII, XVIII, and XXIII) | Pócsfalvi et al., | |
| Saturnisporin SA I | Rebuffat et al., | ||||||||||||||||||||||||||||
| Suzukacillin A 02, A 06 | Krause et al., | ||||||||||||||||||||||||||||
| Trichocellin TC-A-I, TC-A-III | Wada et al., | ||||||||||||||||||||||||||||
| Pept-B-VII | 1922 | 1945 | 984 | 1135 | 788 | 27.80 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | → Pept-B-IV | ||||
| Pept-B-VIII | 1936 | 1959 | 991 | 1149 | 788 | 27.27 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Paracelsin H (Positional isomer of Pept-B-XVII, XIX, XXII, and XXIXb) | Pócsfalvi et al., | ||
| Saturnisporin SA II | Rebuffat et al., | ||||||||||||||||||||||||||||
| Suzukacillin A 04, A 08 | Krause et al., | ||||||||||||||||||||||||||||
| Trichocellin TC-A-II, TC-A-IV | Wada et al., | ||||||||||||||||||||||||||||
| Pept-B-IXa | 1908 | 1931 | 977 | 1135 | 774 | 28.44 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Paracelsin A | Pócsfalvi et al., | ||
| Suzukacillin A 01 | Krause et al., | ||||||||||||||||||||||||||||
| Pept-B-IXb | 1908 | 1931 | 977 | 1135 | 774 | 28.38 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Maddau et al., | ||||
| Pept-B-X | 1922 | 1945 | 984 | 1135 | 788 | 28.77 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Paracelsin F (Positional isomer of Pept-B-XI, XIII, and XVa) | Pócsfalvi et al., | |||
| Suzukacillin A 03 | Krause et al., | ||||||||||||||||||||||||||||
| Pept-B-XI | 1922 | 1945 | 984 | 1135 | 788 | 29.25 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-X, XIII, and XVa) | → Pept-B-X | |||
| Pept-B-XII | 1922 | 1945 | 984 | 1149 | 774 | 29.90 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VI, XVIII, and XXIII) | → Pept-B-VI | |
| Pept-B-XIII | 1922 | 1945 | 984 | 1135 | 788 | 30.28 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-X, XI, and XVa) | → Pept-B-X | |||
| Pept-B-XIVa | 1923 | 1946 | 984.5 | 1149 | 775 | 31.36 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Trichocellin TC-B-I | Wada et al., | ||
| Pept-B-XIVb | 1923 | 1946 | 984.5 | 1149 | 775 | 31.40 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Wada et al., | ||||
| Pept-B-XVa | 1922 | 1945 | 984 | 1135 | 788 | 31.48 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-X, XI, and -XIII) | → Pept-B-X | |||
| Pept-B-XVb | 1922 | 1945 | 984 | 1135 | 788 | 31.53 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Maddau et al., | ||||
| Pept-B-XVI | 1922 | 1945 | 984 | 1149 | 774 | 31.98 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Paracelsin C | Pócsfalvi et al., | |
| Pept-B-XVII | 1936 | 1959 | 991 | 1149 | 788 | 32.67 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VIII, XIX, XXII, and XXIXb) | → Pept-B-VIII | ||
| Pept-B-XVIII | 1922 | 1945 | 984 | 1149 | 774 | 33.49 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VI, XII, and XXIII) | → Pept-B-VI | |
| Pept-B-XIX | 1936 | 1959 | 991 | 1149 | 788 | 33.55 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VIII, XVII, XXII, and XXIXb) | → Pept-B-VIII | ||
| Pept-B-XX | 1936 | 1959 | 991 | 1163 | 774 | 34.41 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Paracelsin D (Positional isomer of Pept-B-XXXIIIa, XXXVa, XLIIb, XLVIa, and LVIII) | Pócsfalvi et al., |
| Saturnisporin SA III | Rebuffat et al., | ||||||||||||||||||||||||||||
| Suzukacillin A 05 | Krause et al., | ||||||||||||||||||||||||||||
| Pept-B-XXI | 1937 | 1960 | 991.5 | 1149 | 789 | 34.15 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Pheol | Trichocellin TC-B-II | Wada et al., | |||
| Pept-B-XXII | 1936 | 1959 | 991 | 1149 | 788 | 34.59 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VIII, XVII, XIX, and XXIXb) | → Pept-B-VIII | ||
| Pept-B-XXIII | 1922 | 1945 | 984 | 1149 | 774 | 35.25 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VI, XII, and XVIII) | → Pept-B-VI | |
| Pept-B-XXIV | 1950 | 1973 | 998 | 1163 | 788 | 35.59 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Saturnisporin SA IV (Positional isomer of Pept-B-XXVII, XXXIIa, XXXVIII, and XLVa) | Rebuffat et al., | |
| Suzukacillin A 07 | Krause et al., | ||||||||||||||||||||||||||||
| Pept-B-XXV | 1937 | 1960 | 991.5 | 1163 | 775 | 35.97 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Wada et al., | |||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXVI | 1950 | 1973 | 998 | 1177 | 774 | 36.65 | Ac | Aib | Ala | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | ||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXVII | 1950 | 1973 | 998 | 1163 | 788 | 37.31 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXIV, XXXIIa, XXXVIII, and XLVa) | → Pept-B-XXIV | |
| Pept-B-XXVIII | 1950 | 1973 | 998 | 1177 | 774 | 37.89 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | ||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXIXa | 1936 | 1959 | 991 | 1149 | 788 | 38.30 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | |||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXIXb | 1936 | 1959 | 991 | 1149 | 788 | 37.80 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-VIII, XVII, XIX, and XXII) | → Pept-B-VIII | ||
| Pept-B-XXX | 1950 | 1973 | 998 | 1177 | 774 | 38.51 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Maddau et al., | ||
| Pept-B-XXXI | 1951 | 1974 | 998.5 | 1163 | 789 | 39.13 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Pheol | Wada et al., | ||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXXIIa | 1950 | 1973 | 998 | 1163 | 788 | 39.15 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXIV, XXVII, XXXVIII, and XLVa) | → Pept-B-XXIV | |
| Pept-B-XXXIIb | 1964 | 1987 | 1005 | 1177 | 788 | 39.20 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | |||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-XXXIIIa | 1936 | 1959 | 991 | 1163 | 774 | 38.98 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XX, XXXVa, XLIIb, XLVIa, and LVIII) | → Pept-B-XX |
| Pept-B-XXXIIIb | 1936 | 1959 | 991 | 1163 | 774 | 39.25 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Maddau et al., | |||
| Pept-B-XXXIIIc | 1950 | 1973 | 998 | 1177 | 774 | 39.20 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXX, XLIIa, XLVIb, and LIII) | → Pept-B-XXX | |
| Pept-B-XXXIIId | 1951 | 1974 | 998.5 | 1177 | 775 | 39.31 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Pócsfalvi et al., | |||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXXIVa | 1937 | 1960 | 991.5 | 1149 | 789 | 39.59 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Gly | Aib | Pro | Vxx | Aib | Gln | Pheol | Tamandegani et al., | |||||
| Pept-B-XXXIVb | 1951 | 1974 | 998.5 | 1163 | 789 | 39.13 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Pheol | → Pept-B-XXXI | ||||
| Pept-B-XXXVa | 1936 | 1959 | 991 | 1163 | 774 | 39.17 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XX, XXXIIIa, XLIIb, XLVIa, and LVIII) | → Pept-B-XX |
| Pept-B-XXXVb | 1936 | 1959 | 991 | 1163 | 774 | 39.78 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXXIIIb) | → Pept-B-XXXIIIb | ||
| Pept-B-XXXVI | 1964 | 1987 | 1005 | 1191 | 774 | 39.85 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | |||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XXXVII | 1937 | 1960 | 991.5 | 1163 | 775 | 40.54 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | → Pept-B-XXV | |||
| Pept-B-XXXVIII | 1950 | 1973 | 998 | 1163 | 788 | 40.13 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXIV, XXVII, XXXIIa, and XLVa) | → Pept-B-XXIV | |
| Pept-B-XXXIX | 1964 | 1987 | 1005 | 1177 | 788 | 39.57 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Rebuffat et al., | |||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XL | 1950 | 1973 | 998 | 1163 | 788 | 40.55 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Maddau et al., | ||||
| Maddau et al., | |||||||||||||||||||||||||||||
| Maddau et al., | |||||||||||||||||||||||||||||
| Pept-B-XLIa | 1964 | 1987 | 1005 | 1177 | 788 | 40.98 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Maddau et al., | |||
| Maddau et al., | |||||||||||||||||||||||||||||
| Maddau et al., | |||||||||||||||||||||||||||||
| Pept-B-XLIb | 1964 | 1987 | 1005 | 1177 | 788 | 40.82 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | → Pept-B-XXXIIb | |||
| Pept-B-XLIIa | 1950 | 1973 | 998 | 1177 | 774 | 41.54 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXX, XXXIIIc, XLVIb, and LIII) | → Pept-B-XXX | |
| Pept-B-XLIIb | 1936 | 1959 | 991 | 1163 | 774 | 41.64 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Paracelsin D (Positional isomer of Pept-B-XX, XXXIIIa, XXXVa, XLVIa, and LVIII) | → Pept-B-XX |
| Pept-B-XLIII | 1964 | 1987 | 1005 | 1191 | 774 | 41.26 | Ac | Aib | Ala | Aib | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | |||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-XLIV | 1965 | 1988 | 1005.5 | 1191 | 775 | 41.65 | Ac | Aib | Ala | Aib | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Wada et al., | ||||
| Pept-B-XLVa | 1950 | 1973 | 998 | 1163 | 788 | 41.92 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXIV, XXVII, XXXIIa and XXXVIII) | → Pept-B-XXIV | |
| Pept-B-XLVb | 1978 | 2001 | 1012 | 1191 | 788 | 42.47 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | ||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-XLVIa | 1936 | 1959 | 991 | 1163 | 774 | 42.42 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XX, XXXIIIa, XXXVa, XLIIb, and LVIII) | → Pept-B-XX |
| Pept-B-XLVIb | 1950 | 1973 | 998 | 1177 | 774 | 42.42 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXX, XXXIIIc, XLIIa, and LIII) | → Pept-B-XXX | |
| Pept-B-XLVII | 1965 | 1988 | 1005.5 | 1177 | 789 | 42.13 | Ac | Aib | Ala | Aib | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Pheol | Wada et al., | |||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Pept-B-XLVIIIa | 1950 | 1973 | 998 | 1163 | 788 | 43.00 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | → Pept-B-XL | ||||
| Pept-B-XLVIIIb | 1964 | 1987 | 1005 | 1177 | 788 | 42.85 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XLIa, LV, LVI, LXb, and LXI) | → Pept-B-XLIa | ||
| Pept-B-XLIX | 1978 | 2001 | 1012 | 1191 | 788 | 42.56 | Ac | Aib | Ala | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | → Pept-B-XLVb | ||||
| Pept-B-L | 1965 | 1988 | 1005.5 | 1191 | 775 | 42.67 | Ac | Aib | Ala | Aib | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | → Pept-B-XLIV | ||||
| Pept-B-LI | 1978 | 2001 | 1012 | 1205 | 774 | 43.24 | Ac | Aib | Ala | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | ||||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-LII | 1951 | 1974 | 998.5 | 1163 | 789 | 43.38 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Pheol | → Pept-B-XXXI | ||||
| Pept-B-LIII | 1950 | 1973 | 998 | 1177 | 774 | 43.99 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XXX, XXXIIIc, XLIIa, and XLVIb) | → Pept-B-XXX | |
| Pept-B-LIV | 1978 | 2001 | 1012 | 1191 | 788 | 44.00 | Ac | Aib | Ala | Aib | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | ||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-LV | 1964 | 1987 | 1005 | 1177 | 788 | 44.44 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XLIa, XLVIIIb, LVI, LXb, and LXI) | → Pept-B-XLIa | ||
| Pept-B-LVI | 1950 | 1973 | 998 | 1163 | 788 | 45.07 | Ac | Aib | Ala | Aib | Ala | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XLIa, XLVIIIb, LV, LXb, and LXI) | → Pept-B-XLIa | |||
| Pept-B-LVII | 1979 | 2002 | 1012.5 | 1191 | 789 | 45.36 | Ac | Aib | Ala | Aib | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Pheol | Wada et al., | |||||
| Pept-B-LVIII | 1936 | 1959 | 991 | 1163 | 774 | 45.81 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XX, XXXIIIa, XXVc, XLIIb, and XLVIa) | → Pept-B-XX |
| Pept-B-LIX | 1992 | 2015 | 1019 | 1205 | 788 | 45.74 | Ac | Aib | Ala | Ala | Gln | Aib | Lxx | Aib | Gly | Aib | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Pócsfalvi et al., | |||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Pept-B-LXa | 1964 | 1987 | 1005 | 1177 | 788 | 46.50 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XLIXa) | → Pept-B-XLIXa | |||
| Pept-B-LXb | 1964 | 1987 | 1005 | 1177 | 788 | 46.29 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XLIa, XLVIIIb, LV, LVI, and LXI) | → Pept-B-XLIa | ||
| Pept-B-LXI | 1964 | 1987 | 1005 | 1177 | 788 | 48.35 | Ac | Aib | Ala | Aib | Ala | Aib | Aib | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | (Positional isomer of Pept-B-XLIa, XLVIIIb, LV, LVIII, and LXb) | → Pept-B-XLIa |
Variable residues are UNDERLINED in the table header; minor sequence variants are UNDERLINED in the sequences. Amino acid exchanges in new compounds are set in italic.
Sequences of the newly identified brevicelsins (group C) from Trichoderma species of the Longibrachiatum Clade and their similarities to known peptaibols available in the “Comprehensive Peptaibiotics Database.”
| Brevicelsin-I | 1851 | 1874 | 948.5 | 1078 | 774 | 28.72 | Ac | Aib | Ala | Aib | Ala | Aib | - | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Röhrich et al., | ||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Brevicelsin-II | 1865 | 1888 | 955.5 | 1092 | 774 | 29.98 | Ac | Aib | Ala | Ala | Aib | - | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Röhrich et al., | |||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Brevicelsin-III | 1852 | 1875 | 949 | 1078 | 775 | 30.56 | Ac | Aib | Ala | Aib | Ala | Aib | - | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Pheol | Röhrich et al., | |||
| Wada et al., | |||||||||||||||||||||||||||||
| Brevicelsin-IV | 1865 | 1888 | 955.5 | 1078 | 788 | 31.82 | Ac | Aib | Ala | Aib | Ala | Aib | - | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Röhrich et al., | |||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Brevicelsin-V | 1879 | 1902 | 962.5 | 1092 | 788 | 32.82 | Ac | Aib | Ala | Aib | Ala | - | Gln | Aib | Lxx | Aib | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | Röhrich et al., | ||||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Brevicelsin-VI | 1865 | 1888 | 955.5 | 1092 | 774 | 33.20 | Ac | Aib | Ala | Aib | Ala | - | Gln | Aib | Aib | Gly | Aib | Pro | Vxx | Aib | Aib | Gln | Gln | Pheol | Röhrich et al., | ||||
| Pócsfalvi et al., | |||||||||||||||||||||||||||||
| Rebuffat et al., | |||||||||||||||||||||||||||||
| Krause et al., | |||||||||||||||||||||||||||||
| Wada et al., | |||||||||||||||||||||||||||||
| Brevicelsin-VII | 1866 | 1889 | 956 | 1078 | 789 | 33.65 | Ac | Aib | Ala | Aib | Ala | Aib | - | Gln | Aib | Lxx | Gly | Aib | Pro | Vxx | Aib | Gln | Pheol | Röhrich et al., | |||||
| Röhrich et al., | |||||||||||||||||||||||||||||
| Brevicelsin-VIII | 1879 | 1902 | 962.5 | 1092 | 788 | 36.19 | Ac | Aib | Ala | Aib | Ala | - | Gln | Aib | Lxx | Gly | Aib | Pro | Vxx | Aib | Gln | Gln | Pheol | → Brevicelsin V |
Variable residues are UNDERLINED in the table header; minor sequence variants are UNDERLINED in the sequences. Amino acid exchanges in new compounds are set in italic.
Figure 1Heatmap showing the correlation between the production of peptaibols and the phylogenetic relationship between the strains. Monophyletic species are indicated by the bottom bar of the same color, species attributed to single phylogenetic lineages are marked with a star, while mutant strains are indicated with a filled pentagon. The color scale denotes production level increasing from zero (deep blue) to high (deep red).
Figure 2Schematic structure of the 20-residue non-ribosomal peptide synthase (NRPS) from T. longibrachiatum. (A) Up- and downstream regions of the gene encoding the NRPS enzyme; pink pentagons indicate genes of additional putative biosynthetic enzymes (cyt: cytochrome P450, phe: phenylalanine-specific permease, ald: aldo/keto reductase). (B) The 20 modules of the NRPS. AT, acyl transferase; C, condensation module; A, adenylation module; TD, thioesterase domain.
Comparison of signature sequences of NRPS modules and predicted amino acid incorporations with the detected amino acid composition of the 20-residue peptaibols in the case of four Trichoderma species from the Longibrachiatum Clade.
| 1 | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva | Aib |
| 2 | D I L F N G L I | Ala/– | Ala | D I L F N G L I | Ala/– | Ala | D I L F N G L I | Ala/– | Ala | D I L F N G L I | Ala/– | Ala |
| 3 | D L G F L A G V | Aib, Iva/ | Aib, Ala | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib, Iva | D L G F L A G V | Aib, Iva/ | Aib |
| 4 | D V G F V A G V | Aib, Iva/ | Ala | D V G F V A G V | Aib, Iva/ | Ala | D V G F V A G V | Aib, Iva/ | Ala | D V G F V A G V | Aib, Iva/ | Ala |
| 5 | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib |
| 6 | D V G C I E G V | Aib, Iva/ | Ala | D V G C I E G V | Aib, Iva/ | Ala | D V G C I A G V | Aib, Iva/– | Ala | D V G C I E G V | Aib, Iva/ | Ala |
| 7 | D G G M V G G N | Gln/ | Gln | D G G M V G G N | Gln/ | Gln | D G G M V G G N | Gln/ | Gln | D G G M V G G N | Gln | Gln |
| 8 | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib |
| 9 | D A F L I G G V | Aib, Iva/ | Iva, Ile | D A F L I G G V | Aib, Iva/ | Iva, Ile | D A F L L G A V | Ala/ | Iva, Ile | D A F L I G A V | Aib, Iva/ | Iva, Ile |
| 10 | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib |
| 11 | D V G Y L I A V | Aib, Iva/– | Gly | D V G Y L I A V | Aib, Iva/– | Gly | D V G Y L I A V | Aib, Iva/– | Gly | D V G Y L I A V | Aib, Iva/– | Gly |
| 12 | D L G Y L A G - | Aib, Iva/– | Ile, Iva, Aib | D L G Y L A G V | Aib, Iva/ | Ile | D F G F L G A V | Aib, Iva/– | Ile, Iva | D L A Y L A G - | Aib, Iva/– | Ala, Iva, Aib |
| 13 | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib | D L G Y L A G V | Aib, Iva/ | Aib |
| 14 | D V L F C G L I | Pro/– | Pro | D V L F C G L I | Pro | Pro | D V L F C G L I | Pro/– | Pro | D V L F C G L I | Pro | Pro |
| 15 | D A G M I I G V | Aib, Iva/ | Iva | D A G M I I G V | Aib, Iva/ | Iva | D A G M I I G V | Aib, Iva/ | Iva | D A G M I I G V | Aib, Iva/ | Iva |
| 16 | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib | D L G F L A G V | Aib, Iva/ | Aib |
| 17 | D M G W F A G - | Aib, Iva | Aib, Iva | D M G W F A G V | Aib, Iva | Aib, Iva | D M G W F A G V | Aib, Iva | Aib, Iva | D M G W F A G - | Aib, Iva | Aib, Iva |
| 18 | D G G M V G G N | Gln/ | Glu, Gln | D G G M V G G N | Gln/ | Glu, Gln | D G G M V G G N | Gln/ | Glu, Gln | D G G M V G G N | Gln/ | Glu, Gln |
| 19 | D G G M V G G N | Gln/ | Gln | D G G M V G G N | Gln/ | Gln | D G G M V G G N | Gln/ | Gln | D G G M I G G N | Gln | Gln |
| 20 | D A A F I M G V | –/– | Pheol | D A A F I M G V | –/– | Pheol | D A A F I M G V | –/– | Pheol | D A A F I M G V | –/– | Pheol |
Figure 3Representative structures of the most populated clusters for each peptaibol simulation. The simulations were carried out for 1,000 ns in each case.
Figure 4(A) The reweighted potential of mean force (PMF in kcal mol−1) values calculated for end-to-end distance (in Å). The 20-residue paracelsins have been plotted in black, whereas 19-residue brevicelsins are shown in red. The zoomed version of the plot is provided in the inset. The end-to-end values where PMF is zero or close to zero are the energetically stable values and define the most favorable linear conformation. (B) The root-mean-square deviation (in Å) calculated for each residue for all sequences gives an idea of the average fluctuation undergone by the system. Par, Paracelsin; Brev, Brevicelsin.
Antifungal activity of the purified peptaibol extract from T. reesei QM9414 to filamentous fungi.
| 0.1 | 0.05 | 0.003125 | |
| 0.1 | 0.1 | 0.0125 | |
| 0.05 | 0.05 | 0.025 | |
| 0.1 | 0.1 | 0.05 | |
| 0.1 | 0.1 | 0.05 | |
| 0.05 | 0.05 | 0.1 | |
| 0.1 | 0.05 | 0.00625 | |
| 0.05 | 0.05 | 0.00625 |
SC, species complex.
Harzianum A contamination could not be detected in the alamethicin standard based on the exact mass of its deprotonated molecular ion ([M-H].
Figure 5Primary root growth of 6 (A), 7 (B), 8 (C), and 9 (D) days old Arabidopsis thaliana plants after treatment with peptaibol extract from Trichoderma reesei QM9414. Methanol was used for the control plants as all peptaibol extracts were prepared in this solvent. Significance is assessed based on P-values: *P ≤ 0.05; **P ≤ 0.01; ***P ≤ 0.001 and ****P ≤ 0.0001.
Figure 6Pigment content of 15-day-old Arabidopsis thaliana leaves after treatment with peptaibol extract from Trichoderma reesei QM9414: chlorophyll-a (A), chlorophyll-b (B), carotenoids (C) and anthocyanins (D). Methanol was used for the control plants. Significance is assessed based on P-values: *P ≤ 0.05; **P ≤ 0.01; ***P ≤ 0.001 and ****P ≤ 0.0001.
Figure 7Biomass of 15-day-old Arabidopsis thaliana plants after treatment with peptaibol extract from Trichoderma reesei QM9414. Methanol was used for the control plants. Significance is assessed based on P-values: *P ≤ 0.05; **P ≤ 0.01; ***P ≤ 0.001 and ****P ≤ 0.0001.
Toxicity of the peptaibol extract from T. reesei QM9414 to boar sperm and porcine kidney cells.
| 3 | 3 | 3 | 8 | |
| Alamethicin | 5 | 0.2 | 0.2 | 8 |
The values are the median of three measurements, represented by four microscopic fields. The variation between measurements was one dilution step.