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Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches

One of the challenges of modern biotechnology is to find new routes to mitigate the resistance to conventional antibiotics. Antimicrobial peptides (AMPs) are an alternative type of biomolecules, naturally present in a wide variety of organisms, with the capacity to overcome the current microorganism...

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Autores principales: Puentes, Paola Ruiz, Henao, María C., Torres, Carlos E., Gómez, Saúl C., Gómez, Laura A., Burgos, Juan C., Arbeláez, Pablo, Osma, Johann F., Muñoz-Camargo, Carolina, Reyes, Luis H., Cruz, Juan C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759991/
https://www.ncbi.nlm.nih.gov/pubmed/33265897
http://dx.doi.org/10.3390/antibiotics9120854
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author Puentes, Paola Ruiz
Henao, María C.
Torres, Carlos E.
Gómez, Saúl C.
Gómez, Laura A.
Burgos, Juan C.
Arbeláez, Pablo
Osma, Johann F.
Muñoz-Camargo, Carolina
Reyes, Luis H.
Cruz, Juan C.
author_facet Puentes, Paola Ruiz
Henao, María C.
Torres, Carlos E.
Gómez, Saúl C.
Gómez, Laura A.
Burgos, Juan C.
Arbeláez, Pablo
Osma, Johann F.
Muñoz-Camargo, Carolina
Reyes, Luis H.
Cruz, Juan C.
author_sort Puentes, Paola Ruiz
collection PubMed
description One of the challenges of modern biotechnology is to find new routes to mitigate the resistance to conventional antibiotics. Antimicrobial peptides (AMPs) are an alternative type of biomolecules, naturally present in a wide variety of organisms, with the capacity to overcome the current microorganism resistance threat. Here, we reviewed our recent efforts to develop a new library of non-rationally produced AMPs that relies on bacterial genome inherent diversity and compared it with rationally designed libraries. Our approach is based on a four-stage workflow process that incorporates the interplay of recent developments in four major emerging technologies: artificial intelligence, molecular dynamics, surface-display in microorganisms, and microfluidics. Implementing this framework is challenging because to obtain reliable results, the in silico algorithms to search for candidate AMPs need to overcome issues of the state-of-the-art approaches that limit the possibilities for multi-space data distribution analyses in extremely large databases. We expect to tackle this challenge by using a recently developed classification algorithm based on deep learning models that rely on convolutional layers and gated recurrent units. This will be complemented by carefully tailored molecular dynamics simulations to elucidate specific interactions with lipid bilayers. Candidate AMPs will be recombinantly-expressed on the surface of microorganisms for further screening via different droplet-based microfluidic-based strategies to identify AMPs with the desired lytic abilities. We believe that the proposed approach opens opportunities for searching and screening bioactive peptides for other applications.
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spelling pubmed-77599912020-12-26 Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches Puentes, Paola Ruiz Henao, María C. Torres, Carlos E. Gómez, Saúl C. Gómez, Laura A. Burgos, Juan C. Arbeláez, Pablo Osma, Johann F. Muñoz-Camargo, Carolina Reyes, Luis H. Cruz, Juan C. Antibiotics (Basel) Review One of the challenges of modern biotechnology is to find new routes to mitigate the resistance to conventional antibiotics. Antimicrobial peptides (AMPs) are an alternative type of biomolecules, naturally present in a wide variety of organisms, with the capacity to overcome the current microorganism resistance threat. Here, we reviewed our recent efforts to develop a new library of non-rationally produced AMPs that relies on bacterial genome inherent diversity and compared it with rationally designed libraries. Our approach is based on a four-stage workflow process that incorporates the interplay of recent developments in four major emerging technologies: artificial intelligence, molecular dynamics, surface-display in microorganisms, and microfluidics. Implementing this framework is challenging because to obtain reliable results, the in silico algorithms to search for candidate AMPs need to overcome issues of the state-of-the-art approaches that limit the possibilities for multi-space data distribution analyses in extremely large databases. We expect to tackle this challenge by using a recently developed classification algorithm based on deep learning models that rely on convolutional layers and gated recurrent units. This will be complemented by carefully tailored molecular dynamics simulations to elucidate specific interactions with lipid bilayers. Candidate AMPs will be recombinantly-expressed on the surface of microorganisms for further screening via different droplet-based microfluidic-based strategies to identify AMPs with the desired lytic abilities. We believe that the proposed approach opens opportunities for searching and screening bioactive peptides for other applications. MDPI 2020-11-30 /pmc/articles/PMC7759991/ /pubmed/33265897 http://dx.doi.org/10.3390/antibiotics9120854 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Puentes, Paola Ruiz
Henao, María C.
Torres, Carlos E.
Gómez, Saúl C.
Gómez, Laura A.
Burgos, Juan C.
Arbeláez, Pablo
Osma, Johann F.
Muñoz-Camargo, Carolina
Reyes, Luis H.
Cruz, Juan C.
Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches
title Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches
title_full Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches
title_fullStr Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches
title_full_unstemmed Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches
title_short Design, Screening, and Testing of Non-Rational Peptide Libraries with Antimicrobial Activity: In Silico and Experimental Approaches
title_sort design, screening, and testing of non-rational peptide libraries with antimicrobial activity: in silico and experimental approaches
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759991/
https://www.ncbi.nlm.nih.gov/pubmed/33265897
http://dx.doi.org/10.3390/antibiotics9120854
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