| Literature DB >> 25380692 |
Sun-Tee Tay1, Su-Lin Lim, Hui-Wee Tan.
Abstract
BACKGROUND: The increasing resistance of Candida yeasts towards antifungal compounds and the limited choice of therapeutic drugs have spurred great interest amongst the scientific community to search for alternative anti-Candida compounds. Mycocins and fungal metabolites have been reported to have the potential for treatment of fungal infections. In this study, the growth inhibition of Candida species by a mycocin produced by Wickerhamomyces anomalus and a lactone compound from Aureobasidium pullulans were investigated.Entities:
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Year: 2014 PMID: 25380692 PMCID: PMC4246603 DOI: 10.1186/1472-6882-14-439
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Figure 1Killer activity by (a) cultures of killer yeast and (b) an ethanol-precipitated mycocin sample, against on a YEPD-MB agar plate.
Figure 2Determination of the effect of (a) pH and (b) temperature on the activity of mycocin.
Figure 3Determination of the mycocin activity of fractions eluted from Sephadex gel filtration column against by microplate assay (a): the highest growth inhibition against was shown in fraction 8 which corresponded with a protein peak (P); and well diffusion assay (b): 1, void sample; 2, ethanol-precipitated mycocin sample; 3 to 10, 1 to 8 eluted fractions.
Figure 4A fluorescent activity band was observed in the ethanol-precipitated culture supernatant of three batches of , indicating the presence of ß-1,3-glucanase activity (Lane 1 to 3). ß-1,3-glucanase activity was detected by overlaying the native gel with 0.2% (wt/vol) MUG in acetate buffer (pH 5) and incubating for 45 min at 30°C before UV illumination.
Figure 5The effects of (a) fraction J (b) fraction K derived from culture supernatant of on the biofilm development of reference strain SC5314 (yeast cells were co-incubated with crude extract and allowed to proliferate for 24 h) (c) negative control (normal growth medium was used instead of crude extract).
Figure 6GC-MS analysis of the chemical structure and mass spectrum of the major compounds present in the fraction K of culture extract.
susceptibilities of isolates to a standard preparation of HDCL
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| Planktonic MIC (μg/ml) | Biofilm MIC (μg/ml) | ||||
|---|---|---|---|---|---|---|
| MIC range | MIC 50 | MIC 90 | MIC range | MIC 50 | MIC 90 | |
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| 128 - 256 | 256 | 256 | 128 - 512 | 256 | 256 |
| Nonalbicans | 64 - 256 | 256 | 256 | 64 - 1024 | 256 | 256 |
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| 64 - 256 | 256 | 256 | 64 - 512a | 256a | 512a |
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| 128 - 256 | 128 | 256 | 64 - 256 | 128 | 256 |
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| 64 - 256 | 64 | 256 | 128 - 1024b | 128b | 1024b |
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| 64 - 256 | 128 | 256 | 256 - 1024 | 256 | 512 |
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| 128 - 256 | 256 | 256 | 128 - 256c | 128c | 256c |
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| 128 - 256 | 128 | 256 | 128 - 512 | 512 | 512 |
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| 128 | ND | ND | 256 | ND | ND |
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| 128 | ND | ND | 128 | ND | ND |
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| 256 | ND | ND | 128 | ND | ND |
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Footnote: Planktonic MIC: The lowest concentration of HDCL required to inhibit yeast growth after incubation at 37°C for 48 h.
Biofilm MIC: The lowest concentration of HDCL required to cause 50% reduction in biofilm metabolic activity after incubation at 37°C for 48 h.
MIC50 and MIC90 values were only calculated for those species with 5 or more isolates.
ND: Not determined.
a, b, c: Five Candida glabrata and two each of C. parapsilosis and C. orthopsilosis isolates were excluded from the study due to poor biofilm formation (OD490nm < 0.1).
Source and features of . mycocins
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| WC 65 [ | NCYC 434 [ | NCYC 432 [ | YF07b [ | tp2-15 (isolated in this study) |
|---|---|---|---|---|---|
| Source | Culture collection | Culture collection | Culture collection | Marine- derived | Fermented tapioca |
| pH stability | 2 to 5 | 3 to 5.5 | 3 to 5.5 | 3 to 5 | 3 to 6 |
| Temperature stability (°C) | Not determined | Up to 37 | Up to 37 | 20-90 | 4 to 37 |
| Molecular weight (kDa) | 83.3 | 49 | 47 | 47 | 45, 50 |
| pI | 5.0 | 3.7 | 3.4/3.7 | - | Not determined |
| Amino acid sequence analysis | Not determined | Homology with exo-ß-1,3 glucanase (accession no. AJ222862) | Homology with exo-ß-1,3 glucanase (accession no. AJ222862) | Exo-ß-1,3 glucanase (A0MPR7) | Homology with exo-ß-1,3 glucanase (A0MPR7) |
| Inhibitory activity |
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