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Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing

Many antibiotics are ineffective in killing Gram-negative bacteria due to the permeability barrier of the outer-membrane LPS. Infections caused by multi-drug-resistant Gram-negative pathogens require new antibiotics, which are often difficult to develop. Antibiotic potentiators disrupt outer-membran...

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Autores principales: Sinha, Sheetal, Dhanabal, Vidhya Bharathi, Manivannen, Veronica Lavanya, Cappiello, Floriana, Tan, Suet-Mien, Bhattacharjya, Surajit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820106/
https://www.ncbi.nlm.nih.gov/pubmed/36613707
http://dx.doi.org/10.3390/ijms24010263
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author Sinha, Sheetal
Dhanabal, Vidhya Bharathi
Manivannen, Veronica Lavanya
Cappiello, Floriana
Tan, Suet-Mien
Bhattacharjya, Surajit
author_facet Sinha, Sheetal
Dhanabal, Vidhya Bharathi
Manivannen, Veronica Lavanya
Cappiello, Floriana
Tan, Suet-Mien
Bhattacharjya, Surajit
author_sort Sinha, Sheetal
collection PubMed
description Many antibiotics are ineffective in killing Gram-negative bacteria due to the permeability barrier of the outer-membrane LPS. Infections caused by multi-drug-resistant Gram-negative pathogens require new antibiotics, which are often difficult to develop. Antibiotic potentiators disrupt outer-membrane LPS and can assist the entry of large-scaffold antibiotics to the bacterial targets. In this work, we designed a backbone-cyclized ultra-short, six-amino-acid-long (WKRKRY) peptide, termed cWY6 from LPS binding motif of β-boomerang bactericidal peptides. The cWY6 peptide does not exhibit any antimicrobial activity; however, it is able to permeabilize the LPS outer membrane. Our results demonstrate the antibiotic potentiator activity in the designed cWY6 peptide for several conventional antibiotics (vancomycin, rifampicin, erythromycin, novobiocin and azithromycin). Remarkably, the short cWY6 peptide exhibits wound-healing activity in in vitro assays. NMR, computational docking and biophysical studies describe the atomic-resolution structure of the peptide in complex with LPS and mode of action in disrupting the outer membrane. The dual activities of cWY6 peptide hold high promise for further translation to therapeutics.
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spelling pubmed-98201062023-01-07 Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing Sinha, Sheetal Dhanabal, Vidhya Bharathi Manivannen, Veronica Lavanya Cappiello, Floriana Tan, Suet-Mien Bhattacharjya, Surajit Int J Mol Sci Article Many antibiotics are ineffective in killing Gram-negative bacteria due to the permeability barrier of the outer-membrane LPS. Infections caused by multi-drug-resistant Gram-negative pathogens require new antibiotics, which are often difficult to develop. Antibiotic potentiators disrupt outer-membrane LPS and can assist the entry of large-scaffold antibiotics to the bacterial targets. In this work, we designed a backbone-cyclized ultra-short, six-amino-acid-long (WKRKRY) peptide, termed cWY6 from LPS binding motif of β-boomerang bactericidal peptides. The cWY6 peptide does not exhibit any antimicrobial activity; however, it is able to permeabilize the LPS outer membrane. Our results demonstrate the antibiotic potentiator activity in the designed cWY6 peptide for several conventional antibiotics (vancomycin, rifampicin, erythromycin, novobiocin and azithromycin). Remarkably, the short cWY6 peptide exhibits wound-healing activity in in vitro assays. NMR, computational docking and biophysical studies describe the atomic-resolution structure of the peptide in complex with LPS and mode of action in disrupting the outer membrane. The dual activities of cWY6 peptide hold high promise for further translation to therapeutics. MDPI 2022-12-23 /pmc/articles/PMC9820106/ /pubmed/36613707 http://dx.doi.org/10.3390/ijms24010263 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sinha, Sheetal
Dhanabal, Vidhya Bharathi
Manivannen, Veronica Lavanya
Cappiello, Floriana
Tan, Suet-Mien
Bhattacharjya, Surajit
Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing
title Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing
title_full Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing
title_fullStr Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing
title_full_unstemmed Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing
title_short Ultra-Short Cyclized β-Boomerang Peptides: Structures, Interactions with Lipopolysaccharide, Antibiotic Potentiator and Wound Healing
title_sort ultra-short cyclized β-boomerang peptides: structures, interactions with lipopolysaccharide, antibiotic potentiator and wound healing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820106/
https://www.ncbi.nlm.nih.gov/pubmed/36613707
http://dx.doi.org/10.3390/ijms24010263
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