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Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship

The overconsumption and inappropriate use of antibiotics is escalating antibiotic resistance development, which is now one of the 10 top threats to global health. Introducing antibiotics with a novel mode of action into clinical use is urgently needed to address this issue. Deliberately inducing agg...

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Autores principales: Wu, Guiqin, Khodaparast, Laleh, Khodaparast, Ladan, De Vleeschouwer, Matthias, Louros, Nikolaos, Gallardo, Rodrigo, Yi, Pengpeng, Rousseau, Frederic, Schymkowitz, Joost
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10065276/
https://www.ncbi.nlm.nih.gov/pubmed/37000776
http://dx.doi.org/10.1371/journal.pone.0283674
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author Wu, Guiqin
Khodaparast, Laleh
Khodaparast, Ladan
De Vleeschouwer, Matthias
Louros, Nikolaos
Gallardo, Rodrigo
Yi, Pengpeng
Rousseau, Frederic
Schymkowitz, Joost
author_facet Wu, Guiqin
Khodaparast, Laleh
Khodaparast, Ladan
De Vleeschouwer, Matthias
Louros, Nikolaos
Gallardo, Rodrigo
Yi, Pengpeng
Rousseau, Frederic
Schymkowitz, Joost
author_sort Wu, Guiqin
collection PubMed
description The overconsumption and inappropriate use of antibiotics is escalating antibiotic resistance development, which is now one of the 10 top threats to global health. Introducing antibiotics with a novel mode of action into clinical use is urgently needed to address this issue. Deliberately inducing aggregation of target proteins and disrupting protein homeostasis in bacteria via amyloidogenic peptides, also called Pept-ins (from peptide interferors), can be lethal to bacteria and shows considerable promise as a novel antibiotic strategy. However, the translation of Pept-ins into the clinic requires further investigation into their mechanism of action and improvement of their therapeutic window. Therefore, we performed systematic structure modifications of 2 previously discovered Pept-ins, resulting in 179 derivatives, and investigated the corresponding impact on antimicrobial potency, cellular accumulation, and ability to induce protein aggregation in bacteria, in vitro aggregation property, and toxicity on mammalian cells. Our results show that both Pept-in accumulation and aggregation of target proteins in bacteria are requisite for Pept-in mediated antimicrobial activity. Improvement of these two parameters can be achieved via increasing the number of arginine residues, increasing Pept-in aggregation propensity, optimizing the aggregate core structure, adopting β-turn linkers, or forming a disulphide bond. Correspondingly, improvement of these two parameters can enhance Pept-in antimicrobial efficacy against wildtype E. coli BL21 used in the laboratory as well as clinically isolated multidrug-resistant strain E. coli ATCC, A. baumannii, and K. pneumoniae.
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spelling pubmed-100652762023-04-01 Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship Wu, Guiqin Khodaparast, Laleh Khodaparast, Ladan De Vleeschouwer, Matthias Louros, Nikolaos Gallardo, Rodrigo Yi, Pengpeng Rousseau, Frederic Schymkowitz, Joost PLoS One Research Article The overconsumption and inappropriate use of antibiotics is escalating antibiotic resistance development, which is now one of the 10 top threats to global health. Introducing antibiotics with a novel mode of action into clinical use is urgently needed to address this issue. Deliberately inducing aggregation of target proteins and disrupting protein homeostasis in bacteria via amyloidogenic peptides, also called Pept-ins (from peptide interferors), can be lethal to bacteria and shows considerable promise as a novel antibiotic strategy. However, the translation of Pept-ins into the clinic requires further investigation into their mechanism of action and improvement of their therapeutic window. Therefore, we performed systematic structure modifications of 2 previously discovered Pept-ins, resulting in 179 derivatives, and investigated the corresponding impact on antimicrobial potency, cellular accumulation, and ability to induce protein aggregation in bacteria, in vitro aggregation property, and toxicity on mammalian cells. Our results show that both Pept-in accumulation and aggregation of target proteins in bacteria are requisite for Pept-in mediated antimicrobial activity. Improvement of these two parameters can be achieved via increasing the number of arginine residues, increasing Pept-in aggregation propensity, optimizing the aggregate core structure, adopting β-turn linkers, or forming a disulphide bond. Correspondingly, improvement of these two parameters can enhance Pept-in antimicrobial efficacy against wildtype E. coli BL21 used in the laboratory as well as clinically isolated multidrug-resistant strain E. coli ATCC, A. baumannii, and K. pneumoniae. Public Library of Science 2023-03-31 /pmc/articles/PMC10065276/ /pubmed/37000776 http://dx.doi.org/10.1371/journal.pone.0283674 Text en © 2023 Wu et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wu, Guiqin
Khodaparast, Laleh
Khodaparast, Ladan
De Vleeschouwer, Matthias
Louros, Nikolaos
Gallardo, Rodrigo
Yi, Pengpeng
Rousseau, Frederic
Schymkowitz, Joost
Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship
title Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship
title_full Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship
title_fullStr Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship
title_full_unstemmed Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship
title_short Enhanced therapeutic window for antimicrobial Pept-ins by investigating their structure-activity relationship
title_sort enhanced therapeutic window for antimicrobial pept-ins by investigating their structure-activity relationship
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10065276/
https://www.ncbi.nlm.nih.gov/pubmed/37000776
http://dx.doi.org/10.1371/journal.pone.0283674
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