Identification, characterization and evaluation of novel antifungal cyclic peptides from Neobacillus drentensis
Autor: | Ganesh Venkataraman, Ramars Amanchy, Sunitha Rani Routhu, Nagarjuna Chary Ragi, Ganesh Kumar Chityala, Anver Basha Shaik, Chandrasekhar Cheemalamarri, Poornachandra Yedla, Ahmed Kamal, Prabhakar Sripadi |
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Rok vydání: | 2021 |
Předmět: |
chemistry.chemical_classification
Antifungal Agents biology Organic Chemistry Biofilm Candidiasis Bacillus biology.organism_classification Biochemistry Peptides Cyclic Corpus albicans Cyclic peptide In vitro Cell Line chemistry Biofilms Drug Discovery Candida albicans Extracellular Azole Humans Molecular Biology Peptide sequence |
Zdroj: | Bioorganic chemistry. 115 |
ISSN: | 1090-2120 |
Popis: | Marine microbes secrete exopolymeric substances (EPS), which surrounds the biofilm and inhibits the fungal growth. Elucidation of the structure and function of the extracellular exopolymeric substances is of vital relevance therapeutically. The active compound responsible for bioactivity was purified and characterized using TLC, LC/MS/MS, GC/MS and FT-IR. Bioactivity of the characterized cyclic peptides (CLPs) against azole resistant and susceptible Candida strains were examined for growth and biofilm formation using scanning electron microscopy, flow cytometry, confocal microscopy. In the present study we identified bioactive cyclic peptides from marine isolated Neobacillus drentensis that exhibited promising tensio-active properties and antifungal efficacy against azole resistant and susceptible Candida albicans. The cluster is composed of five CLP isoforms which were sequenced and identified as new peptides with compositional and structural variations in the amino acid sequence and fatty acid chain. In vitro cytotoxic activity of CLPs was tested in human fibroblast normal cells. We have observed that the CLPs repressed the Candida albicans growth and multiplication by inhibiting the biofilm formation and disruption of branching filamentous hyphae. CLPs have been found to arrest the C. albicans cell cycle by a block at G1-S transition followed by apoptotic cell death. The current studies suggest these natural marine derived CLPs function as potential anti-biofilm agents against azole C. albicans resistant strains. |
Databáze: | OpenAIRE |
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