| Literature DB >> 26901206 |
Rosario Nicoletti1, Antonio Trincone2.
Abstract
In recent years, the search for novel natural compounds with bioactive properties has received a remarkable boost in view of their possible pharmaceutical exploitation. In this respect the sea is entitled to hold a prominent place, considering the potential of the manifold animals and plants interacting in this ecological context, which becomes even greater when their associated microbes are considered for bioprospecting. This is the case particularly of fungi, which have only recently started to be considered for their fundamental contribution to the biosynthetic potential of other more valued marine organisms. Also in this regard, strains of species which were previously considered typical terrestrial fungi, such as Penicillium and Talaromyces, disclose foreground relevance. This paper offers an overview of data published over the past 25 years concerning the production and biological activities of secondary metabolites of marine strains belonging to these genera, and their relevance as prospective drugs.Entities:
Keywords: Penicillium; Talaromyces; bioactive metabolites; chemodiversity; marine fungi
Mesh:
Substances:
Year: 2016 PMID: 26901206 PMCID: PMC4771990 DOI: 10.3390/md14020037
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Secondary metabolites of Penicillium and Talaromyces strains of marine origin. List is based on the chronological order of isolation of the producing strains.
| Species Name 1 | Strain No. | Source of Isolation 2 | Location | Products 3 | References |
|---|---|---|---|---|---|
| - | Manazaru (Japan) | [ | |||
| OUPS-79 | Tanabe Bay (Japan) | [ | |||
| - | Suruga Bay (Japan) | [ | |||
| BM1689-P | sediment | Uchiura Bay (Japan) | [ | ||
| BM923 | sediment | Miho (Japan) | [ | ||
| - | intertidal sediment | San Antonio Oeste (Argentina) | Cyclo( | [ | |
| NI15501 | sediment (depth 14 m) | Tomari (Japan) | [ | ||
| OUPS-N133 | Japan | Pyrenocine A–B, | [ | ||
| many strains | several sources | Mochima Bay and Paria Bay (Venezuela) | Citrinin, Tanzawaic acid A | [ | |
| M23B-7 = IBT20952 and 12 more strains | Mochima Bay and Paria Bay (Venezuela) | Tanzawaic acid | [ | ||
| #CNC-350 | Sweetings Cay (Bahamas) | Verticillin A, | [ | ||
| K029 | Seragaki (Japan) | [ | |||
| K036 | Seragaki (Japan) | [ | |||
| #386 | sand | South China Sea | Penicillazine (Trichodermamide A) | [ | |
| HBI-3/D | Mangangan Island (Indonesia) | [ | |||
| 991084 | Papua New Guinea | [ | |||
| F97S76 | Fiji | [ | |||
| F01V25 | Dravuni (Fiji) | [ | |||
| E-00-12/3 | Elba Island (Italy) | Communesin B, | [ | ||
| E-00-2/6a | Elba Island (Italy) | [ | |||
| a004181, b004181 | sediment (depth 4380 ft) | Matuka (Fiji) | Anserinone A–B, | [ | |
| LCP99.43.43 = MMS351 | water | La Prée (France) | Griseofulvin, Dechlorogriseofulvin, Orcinol, Penicillic acid, Agroclavine, Festuclavine, Nortryptoquivaline, | [ | |
| N059 | Okinawa (Japan) | Citrinin, | [ | ||
| N055 | Okinawa (Japan) | [ | |||
| H-TW5/869 | water | Helgoland Island (Germany) | [ | ||
| DSM16137 = E01-10/3 | Elba Island (Italy) | [ | |||
| M204077 | sediment | Jiaozhou Bay (China) | Sorbicillin, | [ | |
| - | Hainan (China) | Griseofulvin, Dechlorogriseofulvin, | [ | ||
| Cl-2002 | Quintay (Chile) | Mycophenolic acid, Mycophenolic acid methyl ester, Tyrosol | [ | ||
| KF021 | Elba Island (Italy) | [ | |||
| - | Toyama Bay (Japan) | 4-Hydroxy-2-methoxyacetanilide, 4-Methoxyphenylacetic acid, 4-(2-Hydroxyethyl)phenol, 3-Methoxyphenol, 4-Hydroxyphenylacetic acid | [ | ||
| - | sediment (depth 11 m) | Amursky Bay (Sea of Japan) | Shearinine A, | [ | |
| MST-MF667 | boat ramp | Port Huon (Tasmania, Australia) | Cyclo( | [ | |
| MFA446 | Bijin Island (Korea) | Citrinin, Citrinin H2, Redoxcitrinin, Phenol A, Phenol A acid, 4-Hydroxymellein | [ | ||
| SP0-19 | Jiaozhou Bay (China) | [ | |||
| QY2-10 | Jiaozhou Bay (China) | [ | |||
| SHK1-27 | sediment | Weizhou Island (China) | Averufin, 8- | [ | |
| 03HE3-1 | mud | Heita Bay (Japan) | [ | ||
| BL27-2 | mud | Bering Sea | 3-Acetyl-13-deoxyphomenone, 8α-Hydroxy-13-deoxyphomenone, Sporogen-AO1, | [ | |
| SS080624SCf1 | Ishigaki Island (Japan) | Phomenone, Sporogen-AO1, | [ | ||
| AF1-2 | salt pan | Australia | 3- | [ | |
| CANU MCPT14-1-5 | Otago (New Zealand) | PF1140, | [ | ||
| i-1-1 | Yantai (China) | Citrinin, | [ | ||
| EG-51 | Suez Canal (Egypt) | [ | |||
| F1 | sediment (depth 5080 m) | Pacific Ocean | Brevicompanine B, | [ | |
| F23-2 | sediment (depth 5080 m) | Pacific Ocean | Meleagrin | [ | |
| 3A00005 | sediment (depth 5115 m) | East Pacific Ocean | Brevione A–B, | [ | |
| MMS42 | sediment | Le Croisic (France) | Communesin A–B, D– | [ | |
| PSU-F44 | Similan Islands (Thailand) | [ | |||
| PSU-F40 | Similan Islands (Thailand) | Penicipyrone, | [ | ||
| M207142 | sediment | China | [ | ||
| R03-8/4 = LF066 | Limsky Canal (Croatia) | Meleagrin, Roquefortine C–D, Sorbifuranone B–C, Bisvertinolone, 2′,3′-Dihydrosorbicillin, Xanthocillins, | [ | ||
| SpI080624G1f01 | Ishigaki Island (Japan) | Redoxcitrinin, Sclerotinin A–B, Bisorbibutenolide, Bisvertinolone, Trichodimerol, | [ | ||
| F30 = CBMAI1185 | Sao Paulo State (Brazil) | Meleagrin, Oxaline | [ | ||
| F53 = CBMAI1186 | Sao Paulo State (Brazil) | Citrinin, | [ | ||
| - | sediment (depth 2481 m) | Pacific Ocean | Echinulin, Preechinulin, Didehydroechinulin, Isoechinulin B, Neoechinulins A–B, Tardioxopiperazine A, Variecolorin H, | [ | |
| MF361 | mud | Bohai Sea (China) | Verrucosidin, Norverrrucosidin, | [ | |
| MFB574-2 | Yokgee Island (Korea) | 4,6,4′,6′-Tetrabromo-3,3′-dihydroxy-5,5′-dimethyldiphenyl ether, 4,6,2′,4′,6′-Pentabromo-3,3′-dihydroxy-5,5′-dimethyldiphenyl ether, 3,3′-Dihydroxy-5,5′-dimethyldiphenyl ether, Violacerol I–II | [ | ||
| CNL-338 | Bahamas | [ | |||
| QEN-24S | Weizhou Island (China) | [ | |||
| - | Trinity Bay (Sea of Japan) | Sulochrin, | [ | ||
| - | Trinity Bay (Sea of Japan) | Sulochrin, | [ | ||
| - | sediment | Langqi Island (China) | Citrinin, Decarboxydihydrocitrinone, | [ | |
| JMF034 | sediment (depth 1151 m) | Suruga Bay (Japan) | Gliotoxin, Gliotoxin G, 5a,6-Didehydrogliotoxin, | [ | |
| LF259 | Limsky Canal (Croatia) | Mycophenolic acid | [ | ||
| LF590 | Limsky Canal (Croatia) | Citreoviridins, Territrem B | [ | ||
| LF596 | Limsky Canal (Croatia) | Griseofulvin, Fiscalin A–C, Tryptoquivalin, Nortryptoquivalin | [ | ||
| LF607 | Limsky Canal (Croatia) | Sclerotiorin, Sclerotioramin, | [ | ||
| J05B-3-F-1 | Jeju Island (Korea) | (3 | [ | ||
| SD-44 | sediment (depth 20 m) | South China Sea | [ | ||
| QSD-17 | sediment | South China Sea | Meleagrin, Asperamide B1, Citreohybridonol, | [ | |
| DG(M3)6′C | Toque Island (Brazil) | 13-Desoxyphomenone | [ | ||
| AC(M2)14 | Toque Island (Brazil) | Norlichexanthone | [ | ||
| Ma(G)K | Toque Island (Brazil) | Pyrenocine A–B, | [ | ||
| AS(F)39 | Toque Island (Brazil) | 8-Methoxy-3,5-dimethylisochroman-6-ol | [ | ||
| ghq208 | sediment | Jiaozhou Bay (China) | Penicinoline, | [ | |
| - | Kasai Marine Park (Japan) | [ | |||
| fS36 | Takarajima Island (Japan) | [ | |||
| F00120 | sediment (depth 1300 m) | South China Sea | [ | ||
| SOF07 | sediment (depth 675 m) | South China Sea | Mycophenolic acid, Hydroxy-mycophenolic acid, | [ | |
| PRB-2 | sediment (depth 526 m) | Prydz Bay (Antarctica) | [ | ||
| SD-118 | sediment | South China Sea | Meleagrin, Chrysogine, Methyl 2- | [ | |
| 518 | Danzhou (Hainan, China) | [ | |||
| MMS194 | water | La Baule (France) | Griseofulvin, Dechlorogriseofulvin, Oxaline, Maculosin, Penicillic acid, Penitremone A–C | [ | |
| MMS460 | sediment | Le Croisic (France) | Griseofulvin, Dechlorogriseofulvin, Oxaline, Penicillic acid, | [ | |
| MMS747 | sediment | La Couplasse (France) | Griseofulvin, Dechlorogriseofulvin, Penicillic acid, Nortryptoquivaline, Agroclavine, Festuclavine | [ | |
| MMS5 | Le Croisic (France) | Meleagrin, Roquefortine C–D, Chrysogine, Aurantioclavine, Maculosin, Glandicolin A–B, Terrestric acid, Verruculotoxin | [ | ||
| MMS14 | Le Croisic (France) | Chrysogine, Cladosporin(=asperentin), 5-Hydroxyasperentin, Antarone A, Violaceic acid, Patulin, Terrestric acid | [ | ||
| MMS15 | Le Croisic (France) | Chrysogine, Cladosporin, 5-Hydroxyasperentin, Aurantioclavine, Antarone A, Patulin, Terrestric acid | [ | ||
| MMS163 | Loire estuary (France) | Patulin, Chrysogine, Cladosporin, 5-Hydroxyasperentin, Terrestric acid | [ | ||
| MMS266 | La Baule (France) | Penostatin derivatives, Fusoxysporone | [ | ||
| MMS417 | Le Croisic (France) | Pestalotin, Hydroxypestalotin, 5,6-Dihydro-4-methoxy-6-(1-oxopentyl)-2H-pyran-2-one | [ | ||
| - | Van Phong Bay (Vietnam) | JBIR-27, Petasol, Sporogen AO-1, Dihydrosporogen AO-1 | [ | ||
| F011 | sediment | Korea | [ | ||
| FF001 | Cicia (Fiji) | Citrinin | [ | ||
| SD-272 | sediment | Pearl River estuary (China) | [ | ||
| - | Shetland Islands (Scotland) | Patulin, Epiepoformin, Phyllostine, Cladosporin | [ | ||
| MWZ14-4 | Weizhou (South China Sea) | [ | |||
| SCSIO00258 | Sanya (Hainan, China) | [ | |||
| SCSGAF0023 | Sanya (Hainan, China) | [ | |||
| SF-5203 | intertidal sediment | Wan Island (Korea) | Fructigenine A, Cyclopenol | [ | |
| SF-5292 | Jeju Island (Korea) | [ | |||
| SF-5295 | Jeju Island (Korea) | Viridicatol | [ | ||
| JF-55 | Jeju Island (Korea) | [ | |||
| JF-72 | Jeju Island (Korea) | Deoxyisoaustamide, Deoxydihydroisoaustamide, | [ | ||
| EN-118 | Fujian (China) | [ | |||
| ZLN29 | sediment | Jiaozhou Bay (China) | Penicillide, | [ | |
| F37 | Arvoredo Island (Brazil) | [ | |||
| PR19N-1 = MBC06294 | sludge (depth 1000 m) | Prydz Bay (Antarctica) | [ | ||
| SCSGAF167 | Sanya (Hainan, China) | Penicitrinol | [ | ||
| SD-273 | sediment (depth 100 m) | Pearl River estuary (China) | Verruculogen, | [ | |
| 366606 | water | Qingdao (China) | [ | ||
| pt-4 | Pingtan Island (China) | Arisugacin C,G,J, | [ | ||
| F446 | sediment (depth 25 m) | Geomun-do Island (Korea) | [ | ||
| KUFA0021 | Kram Island (Thailand) | Spiculisporic acid E, Glaucanic acid, Glauconic acid | [ | ||
| PJX-17 | sediment | South China Sea | [ | ||
| SF-5995 | Terra Nova Bay (Antarctica) | Methylpenicinoline | [ | ||
| AS-53 | Wenchang (Hainan, China) | Lapatin A–B, Prelapatin B, | [ | ||
| SF-6013 | Sea of Okhotsk (Russia) | Tanzawaic acid A–B,D–E, | [ | ||
| IBT28294 | water | North Sea | Asperphenamates, Mycophenolic acid, F13459, Andrastin A, | [ | |
| KMM4663 | Lazurnaya Bay (Sea of Japan) | [ | |||
| KMM4645 | Lazurnaya Bay (Sea of Japan) | [ | |||
| LF458 | Elba Island (Italy) | [ | |||
| SBE-14 | Weizhou (South China Sea) | [ | |||
| XS-20090E18 | Xisha Island (South China Sea) | Purpactin A, Penicillide, Isopenicillide, Hydroxypenicillide, Sch1385568, Sch725680, Pinophilin B, | [ | ||
| PILE14-5 | Phi Phi Island (Thailand) | [ | |||
| KMM4665 | Peter the Great Gulf (Russia) | [ | |||
| CYE-88 | Yanbu (Saudi Arabia) | [ | |||
| CYE-87 | Suez Canal (Egypt) | Terretrione C– | [ | ||
| IO1 | Kermer (Turkey) | [ | |||
| IO2 | Kermer (Turkey) | Curvularin, Dehydrocurvularin, Trichodimerol | [ | ||
| Y32 | water | Indian Ocean, west of Sumatra | Communesine A–B, | [ | |
| KCB12F005 | sediment | Haenam (Korea) | [ | ||
| CF07370 | sediment (depth 100 m) | Gulf of California (Mexico) | Tanzawaic acid B,E, | [ | |
| TPU1271 | organic debris attached to oyster | Oshika Peninsula (Japan) | [ | ||
| ZLQ-69 | water | Bohai Sea (China) | Phenylpyropene B-D, | [ | |
| TPU1311 | Manado (Indonesia) | [ |
1 Current species name is specified in parentheses if different from the one reported in the original reference; 2 Information concerning the kind of organism is indicated as follows: B = brown alga; C = coral, soft coral; F = fish; G = green alga; M = mollusc; P = Angiosperm plant; R = red alga; S = sponge; T = tunicate; U = urchin; Z = bryozoan; 3 Products originally characterized from the corresponding strain are underlined; 4 Talaromycins A–C have been reported as new products. However, the same name was previously used for compounds with a different structure isolated from terrestrial Talaromyces strains [174,175].
Figure 1Structures of novel compounds produced by marine Penicillium/Talaromyces strains displaying inhibitory properties against mammalian tumor cell lines. For the sake of space, compounds produced in series of two or more analogs are presented as a single or type structure.
Figure 2Structures of novel compounds produced by marine Penicillium/Talaromyces strains displaying anti-inflammatory effects.
Figure 3Structures of novel compounds produced by marine Penicillium/Talaromyces strains reported for ROS-scavenging properties.
Figure 4Structures of novel compounds produced by marine Penicillium/Talaromyces strains with enzyme-modulatory activities.
Figure 5Structures of novel antibiotic compounds produced by marine Penicillium/Talaromyces strains.
Figure 6Structure of cis-cyclo(leucyl-tyrosyl) dipeptide.
Figure 7Structures of sorbicathecols.
Figure 8Structures of novel compounds produced by marine Penicillium/Talaromyces characterized for miscellaneous bioactive effects.
Novel compounds produced by marine Penicillium/Talaromyces strains displaying inhibitory properties against mammalian tumor cell lines.
| Compound | Bioactivity | Cell Lines Assayed | References |
|---|---|---|---|
| Acetophthalidin | Cytostatic (arrest at M phase) | tsFT210 | [ |
| 3-Acetyl-9,7(11)-dien-7α-hydroxyl-8-oxoeremophilane | Cytotoxic | A549, BEL-7402 | [ |
| Adametacorenol B | Cytotoxic | NCI-H446 | [ |
| Auranomides | Antiproliferative | K562, ACHN, HepG2, A549 | [ |
| Aurantiomide B | Cytotoxic | HL-60, P388 | [ |
| Aurantiomide C | Cytotoxic | BEL-7402, P388 | |
| Breviones F–H | Antiproliferative | HeLa | [ |
| Brevione I | Cytotoxic | MCF-7, A549 | [ |
| Brocaenols A–C | Cytotoxic | HCT-116 | [ |
| Chloctanspirones A–B | Cytotoxic | HL-60, A549 | [ |
| 1-Chloro-3β-acetoxy-7-hydroxyl-trinoreremophil-1,6,9-trien-8-one | Cytotoxic | HL-60, A549 | [ |
| Citrinadin A | Cytotoxic | L1210, KB | [ |
| Citrinadin B | Cytotoxic | L1210 | [ |
| Citrinal A | Cytotoxic | K562 | [ |
| Comazaphilones D–F | Cytotoxic | SW1990 | [ |
| Communesins A–B | Cytotoxic | P388 | [ |
| Communesins B–D | Antiproliferative | U-937, THP-1, NAMALWA, MOLT-3, SUP-B15 | [ |
| Conidiogenone B | Cytotoxic | BEL-7402, HL-60 | [ |
| 11′-Deoxyverticillin A, 11,11′-Dideoxyverticillin A | Cytotoxic | HCT-116 | [ |
| Dihydrotrichodimerol, Tetrahydrotrichodimerol | Cytotoxic | P388, A549 | [ |
| (2 | Cytotoxic | HeLa, SW620 | [ |
| 3,4-Dihydroxy-4-(4′-methoxyphenyl)-3,4-dihydro-2(1H)-quinolinone | Cytotoxic | SKOV-3 | [ |
| Epolactaene | Cytostatic (arrest at G0/G1 phase) | SH-SY5Y | [ |
| Fellutamides A–B | Cytotoxic | P388, KB | [ |
| Formylanserinone B, Epoxyserinone B | Cytotoxic | L1210, C38, CFU-GM, H116, H125, MDA-MB-435 | [ |
| Gliotoxin derivatives | Cytotoxic | P388 | [ |
| Herqueidiketal | Cytotoxic | A549 | [ |
| JBIR-28 | Cytotoxic | HeLa | [ |
| Ligerin | Antiproliferative | OSRGa, POS1, AT6-1, L929 | [ |
| Meleagrin B | Cytotoxic | BEL-7402, HL-60, A549, MOLT-4 | [ |
| Pro-apoptotic | HL-60 | [ | |
| Meleagrins D–E | Cytotoxic | A549 | [ |
| Minioluteumides | Cytotoxic | HepG2 | [ |
| Penicacid A | Antiproliferative | Mouse splenocytes | [ |
| Penicilliumin A | Cytotoxic | A375, B16, HeLa | [ |
| Penicillivinacine | Antimigratory | MDA-MB-231 | [ |
| Penicillones A–B | Cytotoxic | P388, A549 | [ |
| Penicillone A | Cytotoxic | SW620 | [ |
| Penicisteroid A | Cytotoxic | HeLa, SW1990, NCI-H460 | [ |
| Penicitide A | Cytotoxic | HepG2 | [ |
| Penicitrinine A | Antiproliferative, pro-apoptotic | 23 tumor cell lines | [ |
| Penicitrinols C, E | Cytotoxic | HL-60 | [ |
| Penipacids A, E | Cytotoxic | RKO | [ |
| Penipalines B–C | Cytotoxic | A549, HCT-116 | [ |
| Penipanoid A | Cytotoxic | SMMC-7721 | [ |
| Penochalasins A–H | Cytotoxic | P388 | [ |
| Penostatins A–C,E–I | Cytotoxic | P388 | [ |
| Perinadine A | Cytotoxic | L1210 | [ |
| Phenylpyropene E | Cytotoxic | MGC-803 | [ |
| Pinophilins | Antiproliferative | A549, BALL-1, HCT116, HeLa, NUGC-3 | [ |
| Prenpenicillide | Cytotoxic | HepG2 | [ |
| Pyrenocine E | Cytotoxic | P388 | [ |
| Sargassopenilline E | Cytotoxic | CD-1 | [ |
| Shearinines | Pro-apoptotic | HL-60 | [ |
| Sorbicillactones, Sorbivinetol, Sorbivinetone | Cytotoxic | L5178y | [ |
| Tanzawaic acids | Antiproliferative, pro-apoptotic | K562, U937, Jurkat, Raji | [ |
| Terrestrols A–H | Cytotoxic | BEL-7402, HL-60, A549, MOLT-4 | [ |
| Terretrione D | Antimigratory | MDA-MB-231 | [ |
Novel antibiotic compounds produced by marine Penicillium/Talaromyces strains.
| Compound | Bioactivity | Microbial Species Assayed | References |
|---|---|---|---|
| Adametizine A | Antibacterial | [ | |
| Antifungal | |||
| Arisugacin K | Antibacterial | [ | |
| Cillifuranone | Antibacterial | [ | |
| Antifungal | |||
| Comazaphilones | Antibacterial | [ | |
| Communol A, F–G | Antibacterial | [ | |
| Conidiogenone B | Antibacterial | [ | |
| Antifungal | |||
| Dictyosphaeric acid A | Antibacterial | [ | |
| Antifungal | |||
| Isocyclocitrinols | Antibacterial | [ | |
| Peniciadametizines | Antifungal | [ | |
| Penicifuran A | Antibacterial | [ | |
| Penicilactone | Antibacterial | [ | |
| Penicimonoterpene | Antifungal | [ | |
| Antibacterial | [ | ||
| Penicisteroid A | Antifungal | [ | |
| Penicitide A | Antifungal | [ | |
| Penicyclones A–E | Antibacterial | [ | |
| Perinadine A | Antibacterial | [ | |
| Pinodiketopiperazine A | Antibacterial | [ | |
| Scalusamide A | Antibacterial | [ | |
| Antifungal | |||
| Talaromycesones | Antibacterial | [ | |
| Terretrione D | Antifungal | [ | |
| Xestodecalactone B | Antifungal | [ |
m.r.: Methicillin resistant.