c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae

Biofilm formation by Vibrio cholerae is regulated by c-di-GMP and requires the type IV MSHA pilus. Here, Floyd et al. show that the MSHA pilus is a dynamic system, and that both extension and retraction are directly controlled by c-di-GMP via regulation of activity of the extension ATPase MshE.

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Autores principales: Kyle A. Floyd, Calvin K. Lee, Wujing Xian, Mahmoud Nametalla, Aneesa Valentine, Benjamin Crair, Shiwei Zhu, Hannah Q. Hughes, Jennifer L. Chlebek, Daniel C. Wu, Jin Hwan Park, Ali M. Farhat, Charles J. Lomba, Courtney K. Ellison, Yves V. Brun, Javier Campos-Gomez, Ankur B. Dalia, Jun Liu, Nicolas Biais, Gerard C. L. Wong, Fitnat H. Yildiz
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/cabf8badabb34c2f9c45f7702f8ed372
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spelling oai:doaj.org-article:cabf8badabb34c2f9c45f7702f8ed3722021-12-02T15:33:52Zc-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae10.1038/s41467-020-15331-82041-1723https://doaj.org/article/cabf8badabb34c2f9c45f7702f8ed3722020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15331-8https://doaj.org/toc/2041-1723Biofilm formation by Vibrio cholerae is regulated by c-di-GMP and requires the type IV MSHA pilus. Here, Floyd et al. show that the MSHA pilus is a dynamic system, and that both extension and retraction are directly controlled by c-di-GMP via regulation of activity of the extension ATPase MshE.Kyle A. FloydCalvin K. LeeWujing XianMahmoud NametallaAneesa ValentineBenjamin CrairShiwei ZhuHannah Q. HughesJennifer L. ChlebekDaniel C. WuJin Hwan ParkAli M. FarhatCharles J. LombaCourtney K. EllisonYves V. BrunJavier Campos-GomezAnkur B. DaliaJun LiuNicolas BiaisGerard C. L. WongFitnat H. YildizNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kyle A. Floyd
Calvin K. Lee
Wujing Xian
Mahmoud Nametalla
Aneesa Valentine
Benjamin Crair
Shiwei Zhu
Hannah Q. Hughes
Jennifer L. Chlebek
Daniel C. Wu
Jin Hwan Park
Ali M. Farhat
Charles J. Lomba
Courtney K. Ellison
Yves V. Brun
Javier Campos-Gomez
Ankur B. Dalia
Jun Liu
Nicolas Biais
Gerard C. L. Wong
Fitnat H. Yildiz
c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae
description Biofilm formation by Vibrio cholerae is regulated by c-di-GMP and requires the type IV MSHA pilus. Here, Floyd et al. show that the MSHA pilus is a dynamic system, and that both extension and retraction are directly controlled by c-di-GMP via regulation of activity of the extension ATPase MshE.
format article
author Kyle A. Floyd
Calvin K. Lee
Wujing Xian
Mahmoud Nametalla
Aneesa Valentine
Benjamin Crair
Shiwei Zhu
Hannah Q. Hughes
Jennifer L. Chlebek
Daniel C. Wu
Jin Hwan Park
Ali M. Farhat
Charles J. Lomba
Courtney K. Ellison
Yves V. Brun
Javier Campos-Gomez
Ankur B. Dalia
Jun Liu
Nicolas Biais
Gerard C. L. Wong
Fitnat H. Yildiz
author_facet Kyle A. Floyd
Calvin K. Lee
Wujing Xian
Mahmoud Nametalla
Aneesa Valentine
Benjamin Crair
Shiwei Zhu
Hannah Q. Hughes
Jennifer L. Chlebek
Daniel C. Wu
Jin Hwan Park
Ali M. Farhat
Charles J. Lomba
Courtney K. Ellison
Yves V. Brun
Javier Campos-Gomez
Ankur B. Dalia
Jun Liu
Nicolas Biais
Gerard C. L. Wong
Fitnat H. Yildiz
author_sort Kyle A. Floyd
title c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae
title_short c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae
title_full c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae
title_fullStr c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae
title_full_unstemmed c-di-GMP modulates type IV MSHA pilus retraction and surface attachment in Vibrio cholerae
title_sort c-di-gmp modulates type iv msha pilus retraction and surface attachment in vibrio cholerae
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/cabf8badabb34c2f9c45f7702f8ed372
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