Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance

Antimicrobial peptides (AMPs) are emerging as drug candidates, but the risk of pathogen resistance is not well understood. Here, the authors investigate AMP resistance evolution in E. coli, finding physicochemical features that make AMPs less prone to resistance and no cross- or horizontally-acquire...

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Autores principales: Réka Spohn, Lejla Daruka, Viktória Lázár, Ana Martins, Fanni Vidovics, Gábor Grézal, Orsolya Méhi, Bálint Kintses, Mónika Számel, Pramod K. Jangir, Bálint Csörgő, Ádám Györkei, Zoltán Bódi, Anikó Faragó, László Bodai, Imre Földesi, Diána Kata, Gergely Maróti, Bernadett Pap, Roland Wirth, Balázs Papp, Csaba Pál
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/e014c0e34853487181f89fde9d5f3e38
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spelling oai:doaj.org-article:e014c0e34853487181f89fde9d5f3e382021-12-02T16:57:30ZIntegrated evolutionary analysis reveals antimicrobial peptides with limited resistance10.1038/s41467-019-12364-62041-1723https://doaj.org/article/e014c0e34853487181f89fde9d5f3e382019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12364-6https://doaj.org/toc/2041-1723Antimicrobial peptides (AMPs) are emerging as drug candidates, but the risk of pathogen resistance is not well understood. Here, the authors investigate AMP resistance evolution in E. coli, finding physicochemical features that make AMPs less prone to resistance and no cross- or horizontally-acquired resistance.Réka SpohnLejla DarukaViktória LázárAna MartinsFanni VidovicsGábor GrézalOrsolya MéhiBálint KintsesMónika SzámelPramod K. JangirBálint CsörgőÁdám GyörkeiZoltán BódiAnikó FaragóLászló BodaiImre FöldesiDiána KataGergely MarótiBernadett PapRoland WirthBalázs PappCsaba PálNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Réka Spohn
Lejla Daruka
Viktória Lázár
Ana Martins
Fanni Vidovics
Gábor Grézal
Orsolya Méhi
Bálint Kintses
Mónika Számel
Pramod K. Jangir
Bálint Csörgő
Ádám Györkei
Zoltán Bódi
Anikó Faragó
László Bodai
Imre Földesi
Diána Kata
Gergely Maróti
Bernadett Pap
Roland Wirth
Balázs Papp
Csaba Pál
Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
description Antimicrobial peptides (AMPs) are emerging as drug candidates, but the risk of pathogen resistance is not well understood. Here, the authors investigate AMP resistance evolution in E. coli, finding physicochemical features that make AMPs less prone to resistance and no cross- or horizontally-acquired resistance.
format article
author Réka Spohn
Lejla Daruka
Viktória Lázár
Ana Martins
Fanni Vidovics
Gábor Grézal
Orsolya Méhi
Bálint Kintses
Mónika Számel
Pramod K. Jangir
Bálint Csörgő
Ádám Györkei
Zoltán Bódi
Anikó Faragó
László Bodai
Imre Földesi
Diána Kata
Gergely Maróti
Bernadett Pap
Roland Wirth
Balázs Papp
Csaba Pál
author_facet Réka Spohn
Lejla Daruka
Viktória Lázár
Ana Martins
Fanni Vidovics
Gábor Grézal
Orsolya Méhi
Bálint Kintses
Mónika Számel
Pramod K. Jangir
Bálint Csörgő
Ádám Györkei
Zoltán Bódi
Anikó Faragó
László Bodai
Imre Földesi
Diána Kata
Gergely Maróti
Bernadett Pap
Roland Wirth
Balázs Papp
Csaba Pál
author_sort Réka Spohn
title Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
title_short Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
title_full Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
title_fullStr Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
title_full_unstemmed Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
title_sort integrated evolutionary analysis reveals antimicrobial peptides with limited resistance
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/e014c0e34853487181f89fde9d5f3e38
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