Cargando…

Synthetic group A streptogramin antibiotics that overcome Vat resistance

Natural products serve as chemical blueprints for the majority of antibiotics in our clinical arsenal. The evolutionary process by which these molecules arise is inherently accompanied by the co-evolution of resistance mechanisms that shorten the clinical lifetime of any given class(1). Virginiamyci...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Qi, Pellegrino, Jenna, Lee, D. John, Tran, Arthur A., Chaires, Hector A., Wang, Ruoxi, Park, Jesslyn E., Ji, Kaijie, Chow, David, Zhang, Na, Brilot, Axel F., Biel, Justin T., van Zundert, Gydo, Borrelli, Kenneth, Shinabarger, Dean, Wolfe, Cindy, Murray, Beverly, Jacobson, Matthew P., Mühle, Estelle, Chesneau, Olivier, Fraser, James S., Seiple, Ian B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7546582/
https://www.ncbi.nlm.nih.gov/pubmed/32968273
http://dx.doi.org/10.1038/s41586-020-2761-3
_version_ 1783592247720148992
author Li, Qi
Pellegrino, Jenna
Lee, D. John
Tran, Arthur A.
Chaires, Hector A.
Wang, Ruoxi
Park, Jesslyn E.
Ji, Kaijie
Chow, David
Zhang, Na
Brilot, Axel F.
Biel, Justin T.
van Zundert, Gydo
Borrelli, Kenneth
Shinabarger, Dean
Wolfe, Cindy
Murray, Beverly
Jacobson, Matthew P.
Mühle, Estelle
Chesneau, Olivier
Fraser, James S.
Seiple, Ian B.
author_facet Li, Qi
Pellegrino, Jenna
Lee, D. John
Tran, Arthur A.
Chaires, Hector A.
Wang, Ruoxi
Park, Jesslyn E.
Ji, Kaijie
Chow, David
Zhang, Na
Brilot, Axel F.
Biel, Justin T.
van Zundert, Gydo
Borrelli, Kenneth
Shinabarger, Dean
Wolfe, Cindy
Murray, Beverly
Jacobson, Matthew P.
Mühle, Estelle
Chesneau, Olivier
Fraser, James S.
Seiple, Ian B.
author_sort Li, Qi
collection PubMed
description Natural products serve as chemical blueprints for the majority of antibiotics in our clinical arsenal. The evolutionary process by which these molecules arise is inherently accompanied by the co-evolution of resistance mechanisms that shorten the clinical lifetime of any given class(1). Virginiamycin acetyltransferases (Vats) are resistance proteins that provide protection against streptogramins(2), potent Gram-positive antibiotics that inhibit the bacterial ribosome(3). Due to the challenge of selectively modifying the chemically complex, 23-membered macrocyclic scaffold of group A streptogramins, analogs that overcome Vat resistance have not been previously accessed(2). Here we report the design, synthesis, and antibacterial evaluation of group A streptogramin antibiotics with unprecedented structural variability. Using cryo-electron microscopy and forcefield-based refinement, we characterize the binding of eight analogs to the bacterial ribosome at high resolution, revealing new binding interactions that extend into the peptidyl tRNA binding site and towards synergistic binders that occupy the nascent peptide exit tunnel (NPET). One of these analogs has excellent activity against several streptogramin-resistant strains of S. aureus, exhibits decreased acetylation rates in vitro, and is effective at lowering bacterial load in a mouse model of infection. Our results demonstrate that the combination of rational design and modular chemical synthesis can revitalize classes of antibiotics that are limited by naturally arising resistance mechanisms.
format Online
Article
Text
id pubmed-7546582
institution National Center for Biotechnology Information
language English
publishDate 2020
record_format MEDLINE/PubMed
spelling pubmed-75465822021-03-23 Synthetic group A streptogramin antibiotics that overcome Vat resistance Li, Qi Pellegrino, Jenna Lee, D. John Tran, Arthur A. Chaires, Hector A. Wang, Ruoxi Park, Jesslyn E. Ji, Kaijie Chow, David Zhang, Na Brilot, Axel F. Biel, Justin T. van Zundert, Gydo Borrelli, Kenneth Shinabarger, Dean Wolfe, Cindy Murray, Beverly Jacobson, Matthew P. Mühle, Estelle Chesneau, Olivier Fraser, James S. Seiple, Ian B. Nature Article Natural products serve as chemical blueprints for the majority of antibiotics in our clinical arsenal. The evolutionary process by which these molecules arise is inherently accompanied by the co-evolution of resistance mechanisms that shorten the clinical lifetime of any given class(1). Virginiamycin acetyltransferases (Vats) are resistance proteins that provide protection against streptogramins(2), potent Gram-positive antibiotics that inhibit the bacterial ribosome(3). Due to the challenge of selectively modifying the chemically complex, 23-membered macrocyclic scaffold of group A streptogramins, analogs that overcome Vat resistance have not been previously accessed(2). Here we report the design, synthesis, and antibacterial evaluation of group A streptogramin antibiotics with unprecedented structural variability. Using cryo-electron microscopy and forcefield-based refinement, we characterize the binding of eight analogs to the bacterial ribosome at high resolution, revealing new binding interactions that extend into the peptidyl tRNA binding site and towards synergistic binders that occupy the nascent peptide exit tunnel (NPET). One of these analogs has excellent activity against several streptogramin-resistant strains of S. aureus, exhibits decreased acetylation rates in vitro, and is effective at lowering bacterial load in a mouse model of infection. Our results demonstrate that the combination of rational design and modular chemical synthesis can revitalize classes of antibiotics that are limited by naturally arising resistance mechanisms. 2020-09-23 2020-10 /pmc/articles/PMC7546582/ /pubmed/32968273 http://dx.doi.org/10.1038/s41586-020-2761-3 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Li, Qi
Pellegrino, Jenna
Lee, D. John
Tran, Arthur A.
Chaires, Hector A.
Wang, Ruoxi
Park, Jesslyn E.
Ji, Kaijie
Chow, David
Zhang, Na
Brilot, Axel F.
Biel, Justin T.
van Zundert, Gydo
Borrelli, Kenneth
Shinabarger, Dean
Wolfe, Cindy
Murray, Beverly
Jacobson, Matthew P.
Mühle, Estelle
Chesneau, Olivier
Fraser, James S.
Seiple, Ian B.
Synthetic group A streptogramin antibiotics that overcome Vat resistance
title Synthetic group A streptogramin antibiotics that overcome Vat resistance
title_full Synthetic group A streptogramin antibiotics that overcome Vat resistance
title_fullStr Synthetic group A streptogramin antibiotics that overcome Vat resistance
title_full_unstemmed Synthetic group A streptogramin antibiotics that overcome Vat resistance
title_short Synthetic group A streptogramin antibiotics that overcome Vat resistance
title_sort synthetic group a streptogramin antibiotics that overcome vat resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7546582/
https://www.ncbi.nlm.nih.gov/pubmed/32968273
http://dx.doi.org/10.1038/s41586-020-2761-3
work_keys_str_mv AT liqi syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT pellegrinojenna syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT leedjohn syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT tranarthura syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT chaireshectora syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT wangruoxi syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT parkjesslyne syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT jikaijie syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT chowdavid syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT zhangna syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT brilotaxelf syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT bieljustint syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT vanzundertgydo syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT borrellikenneth syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT shinabargerdean syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT wolfecindy syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT murraybeverly syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT jacobsonmatthewp syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT muhleestelle syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT chesneauolivier syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT fraserjamess syntheticgroupastreptograminantibioticsthatovercomevatresistance
AT seipleianb syntheticgroupastreptograminantibioticsthatovercomevatresistance