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A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii

Searching for new antimicrobials is a pressing issue to conquer the emergence of multidrug-resistant (MDR) bacteria and fungi. Antimicrobial peptides (AMPs) usually have antimicrobial mechanisms different from those of traditional antibiotics and bring new hope in the discovery of new antimicrobials...

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Autores principales: Chen, Sung-Pang, Chen, Eric H-L, Yang, Sheng-Yung, Kuo, Pin-Shin, Jan, Hau-Ming, Yang, Tsai-Chen, Hsieh, Ming-Yen, Lee, Kung-Ta, Lin, Chun-Hung, Chen, Rita P-Y
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8250858/
https://www.ncbi.nlm.nih.gov/pubmed/34220763
http://dx.doi.org/10.3389/fmicb.2021.678330
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author Chen, Sung-Pang
Chen, Eric H-L
Yang, Sheng-Yung
Kuo, Pin-Shin
Jan, Hau-Ming
Yang, Tsai-Chen
Hsieh, Ming-Yen
Lee, Kung-Ta
Lin, Chun-Hung
Chen, Rita P-Y
author_facet Chen, Sung-Pang
Chen, Eric H-L
Yang, Sheng-Yung
Kuo, Pin-Shin
Jan, Hau-Ming
Yang, Tsai-Chen
Hsieh, Ming-Yen
Lee, Kung-Ta
Lin, Chun-Hung
Chen, Rita P-Y
author_sort Chen, Sung-Pang
collection PubMed
description Searching for new antimicrobials is a pressing issue to conquer the emergence of multidrug-resistant (MDR) bacteria and fungi. Antimicrobial peptides (AMPs) usually have antimicrobial mechanisms different from those of traditional antibiotics and bring new hope in the discovery of new antimicrobials. In addition to antimicrobial activity, stability and target selectivity are important concerns to decide whether an antimicrobial peptide can be applied in vivo. Here, we used a simple de novo designed peptide, pepD2, which contains only three kinds of amino acid residues (W, K, L), as an example to evaluate how the residues and modifications affect the antimicrobial activity against Acinetobacter baumannii, stability in plasma, and toxicity to human HEK293 cells. We found that pepI2 with a Leu→Ile substitution can decrease the minimum bactericidal concentrations (MBC) against A. baumannii by one half (4 μg/mL). A D-form peptide, pepdD2, in which the D-enantiomers replaced the L-enantiomers of the Lys(K) and Leu(L) residues, extended the peptide half-life in plasma by more than 12-fold. PepD3 is 3-residue shorter than pepD2. Decreasing peptide length did not affect antimicrobial activity but increased the IC(50) to HEK293 cells, thus increased the selectivity index (SI) between A. baumannii and HEK293 cells from 4.7 to 8.5. The chain length increase of the N-terminal acyl group and the Lys→Arg substitution greatly enhanced the hemolytic activity, hence those modifications are not good for clinical application. Unlike colistin, the action mechanism of our peptides relies on negatively charged lipids rather than lipopolysaccharides. Therefore, not only gram-negative bacteria but also gram-positive bacteria can be killed by our peptides.
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spelling pubmed-82508582021-07-03 A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii Chen, Sung-Pang Chen, Eric H-L Yang, Sheng-Yung Kuo, Pin-Shin Jan, Hau-Ming Yang, Tsai-Chen Hsieh, Ming-Yen Lee, Kung-Ta Lin, Chun-Hung Chen, Rita P-Y Front Microbiol Microbiology Searching for new antimicrobials is a pressing issue to conquer the emergence of multidrug-resistant (MDR) bacteria and fungi. Antimicrobial peptides (AMPs) usually have antimicrobial mechanisms different from those of traditional antibiotics and bring new hope in the discovery of new antimicrobials. In addition to antimicrobial activity, stability and target selectivity are important concerns to decide whether an antimicrobial peptide can be applied in vivo. Here, we used a simple de novo designed peptide, pepD2, which contains only three kinds of amino acid residues (W, K, L), as an example to evaluate how the residues and modifications affect the antimicrobial activity against Acinetobacter baumannii, stability in plasma, and toxicity to human HEK293 cells. We found that pepI2 with a Leu→Ile substitution can decrease the minimum bactericidal concentrations (MBC) against A. baumannii by one half (4 μg/mL). A D-form peptide, pepdD2, in which the D-enantiomers replaced the L-enantiomers of the Lys(K) and Leu(L) residues, extended the peptide half-life in plasma by more than 12-fold. PepD3 is 3-residue shorter than pepD2. Decreasing peptide length did not affect antimicrobial activity but increased the IC(50) to HEK293 cells, thus increased the selectivity index (SI) between A. baumannii and HEK293 cells from 4.7 to 8.5. The chain length increase of the N-terminal acyl group and the Lys→Arg substitution greatly enhanced the hemolytic activity, hence those modifications are not good for clinical application. Unlike colistin, the action mechanism of our peptides relies on negatively charged lipids rather than lipopolysaccharides. Therefore, not only gram-negative bacteria but also gram-positive bacteria can be killed by our peptides. Frontiers Media S.A. 2021-06-18 /pmc/articles/PMC8250858/ /pubmed/34220763 http://dx.doi.org/10.3389/fmicb.2021.678330 Text en Copyright © 2021 Chen, Chen, Yang, Kuo, Jan, Yang, Hsieh, Lee, Lin and Chen. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Chen, Sung-Pang
Chen, Eric H-L
Yang, Sheng-Yung
Kuo, Pin-Shin
Jan, Hau-Ming
Yang, Tsai-Chen
Hsieh, Ming-Yen
Lee, Kung-Ta
Lin, Chun-Hung
Chen, Rita P-Y
A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii
title A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii
title_full A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii
title_fullStr A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii
title_full_unstemmed A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii
title_short A Systematic Study of the Stability, Safety, and Efficacy of the de novo Designed Antimicrobial Peptide PepD2 and Its Modified Derivatives Against Acinetobacter baumannii
title_sort systematic study of the stability, safety, and efficacy of the de novo designed antimicrobial peptide pepd2 and its modified derivatives against acinetobacter baumannii
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8250858/
https://www.ncbi.nlm.nih.gov/pubmed/34220763
http://dx.doi.org/10.3389/fmicb.2021.678330
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