Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria

The antibiotic vancomycin inhibits bacterial cell wall synthesis by binding to a membrane-associated precursor. Here, Blaskovich et al. synthesize vancomycin derivatives containing lipophilic peptide moieties that enhance membrane affinity and in vivo activities against glycopeptide-resistant strain...

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Autores principales: Mark A. T. Blaskovich, Karl A. Hansford, Yujing Gong, Mark S. Butler, Craig Muldoon, Johnny X. Huang, Soumya Ramu, Alberto B. Silva, Mu Cheng, Angela M. Kavanagh, Zyta Ziora, Rajaratnam Premraj, Fredrik Lindahl, Tanya A. Bradford, June C. Lee, Tomislav Karoli, Ruby Pelingon, David J. Edwards, Maite Amado, Alysha G. Elliott, Wanida Phetsang, Noor Huda Daud, Johan E. Deecke, Hanna E. Sidjabat, Sefetogi Ramaologa, Johannes Zuegg, Jason R. Betley, Andrew P. G. Beevers, Richard A. G. Smith, Jason A. Roberts, David L. Paterson, Matthew A. Cooper
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Publicado: Nature Portfolio 2018
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spelling oai:doaj.org-article:5939bc54d4b347d7b1b16946d6d5c4902021-12-02T14:39:24ZProtein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria10.1038/s41467-017-02123-w2041-1723https://doaj.org/article/5939bc54d4b347d7b1b16946d6d5c4902018-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02123-whttps://doaj.org/toc/2041-1723The antibiotic vancomycin inhibits bacterial cell wall synthesis by binding to a membrane-associated precursor. Here, Blaskovich et al. synthesize vancomycin derivatives containing lipophilic peptide moieties that enhance membrane affinity and in vivo activities against glycopeptide-resistant strains.Mark A. T. BlaskovichKarl A. HansfordYujing GongMark S. ButlerCraig MuldoonJohnny X. HuangSoumya RamuAlberto B. SilvaMu ChengAngela M. KavanaghZyta ZioraRajaratnam PremrajFredrik LindahlTanya A. BradfordJune C. LeeTomislav KaroliRuby PelingonDavid J. EdwardsMaite AmadoAlysha G. ElliottWanida PhetsangNoor Huda DaudJohan E. DeeckeHanna E. SidjabatSefetogi RamaologaJohannes ZueggJason R. BetleyAndrew P. G. BeeversRichard A. G. SmithJason A. RobertsDavid L. PatersonMatthew A. CooperNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-17 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mark A. T. Blaskovich
Karl A. Hansford
Yujing Gong
Mark S. Butler
Craig Muldoon
Johnny X. Huang
Soumya Ramu
Alberto B. Silva
Mu Cheng
Angela M. Kavanagh
Zyta Ziora
Rajaratnam Premraj
Fredrik Lindahl
Tanya A. Bradford
June C. Lee
Tomislav Karoli
Ruby Pelingon
David J. Edwards
Maite Amado
Alysha G. Elliott
Wanida Phetsang
Noor Huda Daud
Johan E. Deecke
Hanna E. Sidjabat
Sefetogi Ramaologa
Johannes Zuegg
Jason R. Betley
Andrew P. G. Beevers
Richard A. G. Smith
Jason A. Roberts
David L. Paterson
Matthew A. Cooper
Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
description The antibiotic vancomycin inhibits bacterial cell wall synthesis by binding to a membrane-associated precursor. Here, Blaskovich et al. synthesize vancomycin derivatives containing lipophilic peptide moieties that enhance membrane affinity and in vivo activities against glycopeptide-resistant strains.
format article
author Mark A. T. Blaskovich
Karl A. Hansford
Yujing Gong
Mark S. Butler
Craig Muldoon
Johnny X. Huang
Soumya Ramu
Alberto B. Silva
Mu Cheng
Angela M. Kavanagh
Zyta Ziora
Rajaratnam Premraj
Fredrik Lindahl
Tanya A. Bradford
June C. Lee
Tomislav Karoli
Ruby Pelingon
David J. Edwards
Maite Amado
Alysha G. Elliott
Wanida Phetsang
Noor Huda Daud
Johan E. Deecke
Hanna E. Sidjabat
Sefetogi Ramaologa
Johannes Zuegg
Jason R. Betley
Andrew P. G. Beevers
Richard A. G. Smith
Jason A. Roberts
David L. Paterson
Matthew A. Cooper
author_facet Mark A. T. Blaskovich
Karl A. Hansford
Yujing Gong
Mark S. Butler
Craig Muldoon
Johnny X. Huang
Soumya Ramu
Alberto B. Silva
Mu Cheng
Angela M. Kavanagh
Zyta Ziora
Rajaratnam Premraj
Fredrik Lindahl
Tanya A. Bradford
June C. Lee
Tomislav Karoli
Ruby Pelingon
David J. Edwards
Maite Amado
Alysha G. Elliott
Wanida Phetsang
Noor Huda Daud
Johan E. Deecke
Hanna E. Sidjabat
Sefetogi Ramaologa
Johannes Zuegg
Jason R. Betley
Andrew P. G. Beevers
Richard A. G. Smith
Jason A. Roberts
David L. Paterson
Matthew A. Cooper
author_sort Mark A. T. Blaskovich
title Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
title_short Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
title_full Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
title_fullStr Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
title_full_unstemmed Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
title_sort protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/5939bc54d4b347d7b1b16946d6d5c490
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