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Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families

BACKGROUND: The rise of opportunistic fungal infections highlights the need for development of new antimicrobial agents. Antimicrobial Peptides (AMPs) and Antifungal Peptides (AFPs) are among the agents with minimal resistance being developed against them, therefore they can be used as structural te...

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Autores principales: Moradi, Shoeib, Azerang, Parisa, Khalaj, Vahid, Sardari, Soroush
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Avicenna Research Institute 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3572706/
https://www.ncbi.nlm.nih.gov/pubmed/23626876
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author Moradi, Shoeib
Azerang, Parisa
Khalaj, Vahid
Sardari, Soroush
author_facet Moradi, Shoeib
Azerang, Parisa
Khalaj, Vahid
Sardari, Soroush
author_sort Moradi, Shoeib
collection PubMed
description BACKGROUND: The rise of opportunistic fungal infections highlights the need for development of new antimicrobial agents. Antimicrobial Peptides (AMPs) and Antifungal Peptides (AFPs) are among the agents with minimal resistance being developed against them, therefore they can be used as structural templates for design of new antimicrobial agents. METHODS: In the present study four antifungal peptidomimetic structures named C(1) to C(4) were designed based on plant defensin of Pisum sativum. Minimum inhibitory concentrations (MICs) for these structures were determined against Aspergillus niger N402, Candida albicans ATCC 10231, and Saccharomyces cerevisiae PTCC 5052. RESULTS: C(1) and C(2) showed more potent antifungal activity against these fungal strains compared to C(3) and C(4). The structure C(2) demonstrated a potent antifungal activity among them and could be used as a template for future study on antifungal peptidomemetics design. Sequences alignments led to identifying antifungal decapeptide (KTCENLADTY) named KTC-Y, which its MIC was determined on fungal protoplast showing 25 (µg/ml) against Aspergillus fumigatus Af293. CONCLUSION: The present approach to reach the antifungal molecules seems to be a powerful approach in design of bioactive agents based on AMP mimetic identification.
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spelling pubmed-35727062013-04-26 Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families Moradi, Shoeib Azerang, Parisa Khalaj, Vahid Sardari, Soroush Avicenna J Med Biotechnol Original Article BACKGROUND: The rise of opportunistic fungal infections highlights the need for development of new antimicrobial agents. Antimicrobial Peptides (AMPs) and Antifungal Peptides (AFPs) are among the agents with minimal resistance being developed against them, therefore they can be used as structural templates for design of new antimicrobial agents. METHODS: In the present study four antifungal peptidomimetic structures named C(1) to C(4) were designed based on plant defensin of Pisum sativum. Minimum inhibitory concentrations (MICs) for these structures were determined against Aspergillus niger N402, Candida albicans ATCC 10231, and Saccharomyces cerevisiae PTCC 5052. RESULTS: C(1) and C(2) showed more potent antifungal activity against these fungal strains compared to C(3) and C(4). The structure C(2) demonstrated a potent antifungal activity among them and could be used as a template for future study on antifungal peptidomemetics design. Sequences alignments led to identifying antifungal decapeptide (KTCENLADTY) named KTC-Y, which its MIC was determined on fungal protoplast showing 25 (µg/ml) against Aspergillus fumigatus Af293. CONCLUSION: The present approach to reach the antifungal molecules seems to be a powerful approach in design of bioactive agents based on AMP mimetic identification. Avicenna Research Institute 2013 /pmc/articles/PMC3572706/ /pubmed/23626876 Text en Copyright © 2013 Avicenna Research Institute http://creativecommons.org/licenses/by-nc/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License which allows users to read, copy, distribute and make derivative works for non-commercial purposes from the material, as long as the author of the original work is cited properly.
spellingShingle Original Article
Moradi, Shoeib
Azerang, Parisa
Khalaj, Vahid
Sardari, Soroush
Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families
title Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families
title_full Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families
title_fullStr Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families
title_full_unstemmed Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families
title_short Antifungal Indole and Pyrrolidine-2,4-Dione Derivative Peptidomimetic Lead Design Based on In Silico Study of Bioactive Peptide Families
title_sort antifungal indole and pyrrolidine-2,4-dione derivative peptidomimetic lead design based on in silico study of bioactive peptide families
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3572706/
https://www.ncbi.nlm.nih.gov/pubmed/23626876
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