Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation

CARD9 and CARD11 propagate signaling by nucleating Bcl10 polymerization in immune cells and are both held in an autoinhibited state prior to activation. Here, the authors combine structural, biochemical, and cell-based approaches to reveal the structural basis for CARD9/11 autoinhibition and show th...

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Autores principales: Michael J. Holliday, Axel Witt, Alejandro Rodríguez Gama, Benjamin T. Walters, Christopher P. Arthur, Randal Halfmann, Alexis Rohou, Erin C. Dueber, Wayne J. Fairbrother
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/7e23aebac6c444bc92a15b78399d9b56
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spelling oai:doaj.org-article:7e23aebac6c444bc92a15b78399d9b562021-12-02T14:39:04ZStructures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation10.1038/s41467-019-10953-z2041-1723https://doaj.org/article/7e23aebac6c444bc92a15b78399d9b562019-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10953-zhttps://doaj.org/toc/2041-1723CARD9 and CARD11 propagate signaling by nucleating Bcl10 polymerization in immune cells and are both held in an autoinhibited state prior to activation. Here, the authors combine structural, biochemical, and cell-based approaches to reveal the structural basis for CARD9/11 autoinhibition and show that the two proteins are activated through similar but distinct mechanisms.Michael J. HollidayAxel WittAlejandro Rodríguez GamaBenjamin T. WaltersChristopher P. ArthurRandal HalfmannAlexis RohouErin C. DueberWayne J. FairbrotherNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-17 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Michael J. Holliday
Axel Witt
Alejandro Rodríguez Gama
Benjamin T. Walters
Christopher P. Arthur
Randal Halfmann
Alexis Rohou
Erin C. Dueber
Wayne J. Fairbrother
Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation
description CARD9 and CARD11 propagate signaling by nucleating Bcl10 polymerization in immune cells and are both held in an autoinhibited state prior to activation. Here, the authors combine structural, biochemical, and cell-based approaches to reveal the structural basis for CARD9/11 autoinhibition and show that the two proteins are activated through similar but distinct mechanisms.
format article
author Michael J. Holliday
Axel Witt
Alejandro Rodríguez Gama
Benjamin T. Walters
Christopher P. Arthur
Randal Halfmann
Alexis Rohou
Erin C. Dueber
Wayne J. Fairbrother
author_facet Michael J. Holliday
Axel Witt
Alejandro Rodríguez Gama
Benjamin T. Walters
Christopher P. Arthur
Randal Halfmann
Alexis Rohou
Erin C. Dueber
Wayne J. Fairbrother
author_sort Michael J. Holliday
title Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation
title_short Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation
title_full Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation
title_fullStr Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation
title_full_unstemmed Structures of autoinhibited and polymerized forms of CARD9 reveal mechanisms of CARD9 and CARD11 activation
title_sort structures of autoinhibited and polymerized forms of card9 reveal mechanisms of card9 and card11 activation
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/7e23aebac6c444bc92a15b78399d9b56
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