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Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis

In the search for new antibiotics to combat multidrug-resistant microbes, insects offer a rich source of novel anti-infectives, including a remarkably diverse array of antimicrobial peptides (AMPs) with broad activity against a wide range of species. Larvae of the common green bottle fly Lucilia ser...

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Autores principales: Cytryńska, Małgorzata, Rahnamaeian, Mohammad, Zdybicka-Barabas, Agnieszka, Dobslaff, Kristin, Züchner, Thole, Sacheau, Guénaël, Innis, C. Axel, Vilcinskas, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7194015/
https://www.ncbi.nlm.nih.gov/pubmed/32390853
http://dx.doi.org/10.3389/fphar.2020.00532
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author Cytryńska, Małgorzata
Rahnamaeian, Mohammad
Zdybicka-Barabas, Agnieszka
Dobslaff, Kristin
Züchner, Thole
Sacheau, Guénaël
Innis, C. Axel
Vilcinskas, Andreas
author_facet Cytryńska, Małgorzata
Rahnamaeian, Mohammad
Zdybicka-Barabas, Agnieszka
Dobslaff, Kristin
Züchner, Thole
Sacheau, Guénaël
Innis, C. Axel
Vilcinskas, Andreas
author_sort Cytryńska, Małgorzata
collection PubMed
description In the search for new antibiotics to combat multidrug-resistant microbes, insects offer a rich source of novel anti-infectives, including a remarkably diverse array of antimicrobial peptides (AMPs) with broad activity against a wide range of species. Larvae of the common green bottle fly Lucilia sericata are used for maggot debridement therapy, and their effectiveness in part reflects the large panel of AMPs they secrete into the wound. To investigate the activity of these peptides in more detail, we selected two structurally different proline rich peptides (Lser-PRP2 and Lser-PRP3) in addition to the α-helical peptide Lser-stomoxyn. We investigated the mechanism of anti-Escherichia coli action of the PRPs in vitro and found that neither of them interfered with protein synthesis but both were able to bind the bacterial chaperone DnaK and are therefore likely to inhibit protein folding. However, unlike Lser-stomoxyn that permeabilized the bacterial membrane by 1% at the low concentration (0.25 µM) neither of the PRPs alone was able to permeabilize E. coli membrane. In the presence of this Lser-stomoxyn concentration significant increase in anti-E. coli activity of Lser-PRP2 was observed, indicating that this peptide needs specific membrane permeabilizing agents to exert its antibacterial activity. We then examined the AMPs-treated bacterial surface and observed detrimental structural changes in the bacterial cell envelope in response to combined AMPs. The functional analysis of insect AMPs will help select optimal combinations for targeted antimicrobial therapy.
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spelling pubmed-71940152020-05-08 Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis Cytryńska, Małgorzata Rahnamaeian, Mohammad Zdybicka-Barabas, Agnieszka Dobslaff, Kristin Züchner, Thole Sacheau, Guénaël Innis, C. Axel Vilcinskas, Andreas Front Pharmacol Pharmacology In the search for new antibiotics to combat multidrug-resistant microbes, insects offer a rich source of novel anti-infectives, including a remarkably diverse array of antimicrobial peptides (AMPs) with broad activity against a wide range of species. Larvae of the common green bottle fly Lucilia sericata are used for maggot debridement therapy, and their effectiveness in part reflects the large panel of AMPs they secrete into the wound. To investigate the activity of these peptides in more detail, we selected two structurally different proline rich peptides (Lser-PRP2 and Lser-PRP3) in addition to the α-helical peptide Lser-stomoxyn. We investigated the mechanism of anti-Escherichia coli action of the PRPs in vitro and found that neither of them interfered with protein synthesis but both were able to bind the bacterial chaperone DnaK and are therefore likely to inhibit protein folding. However, unlike Lser-stomoxyn that permeabilized the bacterial membrane by 1% at the low concentration (0.25 µM) neither of the PRPs alone was able to permeabilize E. coli membrane. In the presence of this Lser-stomoxyn concentration significant increase in anti-E. coli activity of Lser-PRP2 was observed, indicating that this peptide needs specific membrane permeabilizing agents to exert its antibacterial activity. We then examined the AMPs-treated bacterial surface and observed detrimental structural changes in the bacterial cell envelope in response to combined AMPs. The functional analysis of insect AMPs will help select optimal combinations for targeted antimicrobial therapy. Frontiers Media S.A. 2020-04-24 /pmc/articles/PMC7194015/ /pubmed/32390853 http://dx.doi.org/10.3389/fphar.2020.00532 Text en Copyright © 2020 Cytryńska, Rahnamaeian, Zdybicka-Barabas, Dobslaff, Züchner, Sacheau, Innis and Vilcinskas http://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 Pharmacology
Cytryńska, Małgorzata
Rahnamaeian, Mohammad
Zdybicka-Barabas, Agnieszka
Dobslaff, Kristin
Züchner, Thole
Sacheau, Guénaël
Innis, C. Axel
Vilcinskas, Andreas
Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis
title Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis
title_full Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis
title_fullStr Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis
title_full_unstemmed Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis
title_short Proline-Rich Antimicrobial Peptides in Medicinal Maggots of Lucilia sericata Interact With Bacterial DnaK But Do Not Inhibit Protein Synthesis
title_sort proline-rich antimicrobial peptides in medicinal maggots of lucilia sericata interact with bacterial dnak but do not inhibit protein synthesis
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7194015/
https://www.ncbi.nlm.nih.gov/pubmed/32390853
http://dx.doi.org/10.3389/fphar.2020.00532
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