Cargando…
Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome
The bacterial processivity factor, or sliding clamp (SC), is a target of choice for new antibacterial drugs development. We have previously developed peptides that target Escherichia coli SC and block its interaction with DNA polymerases in vitro. Here, one such SC binding peptide was fused to a Pro...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
RSC
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8341878/ https://www.ncbi.nlm.nih.gov/pubmed/34458754 http://dx.doi.org/10.1039/d0cb00060d |
_version_ | 1783733982955831296 |
---|---|
author | André, Christophe Veillard, Florian Wolff, Philippe Lobstein, Anne-Marie Compain, Guillaume Monsarrat, Clément Reichhart, Jean-Marc Noûs, Camille Burnouf, Dominique Y. Guichard, Gilles Wagner, Jérôme E. |
author_facet | André, Christophe Veillard, Florian Wolff, Philippe Lobstein, Anne-Marie Compain, Guillaume Monsarrat, Clément Reichhart, Jean-Marc Noûs, Camille Burnouf, Dominique Y. Guichard, Gilles Wagner, Jérôme E. |
author_sort | André, Christophe |
collection | PubMed |
description | The bacterial processivity factor, or sliding clamp (SC), is a target of choice for new antibacterial drugs development. We have previously developed peptides that target Escherichia coli SC and block its interaction with DNA polymerases in vitro. Here, one such SC binding peptide was fused to a Proline-rich AntiMicrobial Peptide (PrAMP) to allow its internalization into E. coli cells. Co-immunoprecipitation assays with a N-terminally modified bifunctional peptide that still enters the bacteria but fails to interact with the bacterial ribosome, the major target of PrAMPs, demonstrate that it actually interacts with the bacterial SC. Moreover, when compared to SC non-binding controls, this peptide induces a ten-fold higher antibacterial activity against E. coli, showing that the observed antimicrobial activity is linked to SC binding. Finally, an unmodified bifunctional compound significantly increases the survival of Drosophila melanogaster flies challenged by an E. coli infection. Our study demonstrates the potential of PrAMPs to transport antibiotics into the bacterial cytoplasm and validates the development of drugs targeting the bacterial processivity factor of Gram-negative bacteria as a promising new class of antibiotics. |
format | Online Article Text |
id | pubmed-8341878 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | RSC |
record_format | MEDLINE/PubMed |
spelling | pubmed-83418782021-08-26 Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome André, Christophe Veillard, Florian Wolff, Philippe Lobstein, Anne-Marie Compain, Guillaume Monsarrat, Clément Reichhart, Jean-Marc Noûs, Camille Burnouf, Dominique Y. Guichard, Gilles Wagner, Jérôme E. RSC Chem Biol Chemistry The bacterial processivity factor, or sliding clamp (SC), is a target of choice for new antibacterial drugs development. We have previously developed peptides that target Escherichia coli SC and block its interaction with DNA polymerases in vitro. Here, one such SC binding peptide was fused to a Proline-rich AntiMicrobial Peptide (PrAMP) to allow its internalization into E. coli cells. Co-immunoprecipitation assays with a N-terminally modified bifunctional peptide that still enters the bacteria but fails to interact with the bacterial ribosome, the major target of PrAMPs, demonstrate that it actually interacts with the bacterial SC. Moreover, when compared to SC non-binding controls, this peptide induces a ten-fold higher antibacterial activity against E. coli, showing that the observed antimicrobial activity is linked to SC binding. Finally, an unmodified bifunctional compound significantly increases the survival of Drosophila melanogaster flies challenged by an E. coli infection. Our study demonstrates the potential of PrAMPs to transport antibiotics into the bacterial cytoplasm and validates the development of drugs targeting the bacterial processivity factor of Gram-negative bacteria as a promising new class of antibiotics. RSC 2020-07-16 /pmc/articles/PMC8341878/ /pubmed/34458754 http://dx.doi.org/10.1039/d0cb00060d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry André, Christophe Veillard, Florian Wolff, Philippe Lobstein, Anne-Marie Compain, Guillaume Monsarrat, Clément Reichhart, Jean-Marc Noûs, Camille Burnouf, Dominique Y. Guichard, Gilles Wagner, Jérôme E. Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome |
title | Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome |
title_full | Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome |
title_fullStr | Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome |
title_full_unstemmed | Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome |
title_short | Antibacterial activity of a dual peptide targeting the Escherichia coli sliding clamp and the ribosome |
title_sort | antibacterial activity of a dual peptide targeting the escherichia coli sliding clamp and the ribosome |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8341878/ https://www.ncbi.nlm.nih.gov/pubmed/34458754 http://dx.doi.org/10.1039/d0cb00060d |
work_keys_str_mv | AT andrechristophe antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT veillardflorian antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT wolffphilippe antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT lobsteinannemarie antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT compainguillaume antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT monsarratclement antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT reichhartjeanmarc antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT nouscamille antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT burnoufdominiquey antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT guichardgilles antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome AT wagnerjeromee antibacterialactivityofadualpeptidetargetingtheescherichiacolislidingclampandtheribosome |