Functional role of PGAM5 multimeric assemblies and their polymerization into filaments

PGAM5 is a mitochondrial protein phosphatase whose functions include regulation of mitophagy and cell death. Here, the authors use x-ray crystallography and EM to show that PGAM5 forms dodecameric rings and filaments in solution, and find that PGAM5 rings are essential for catalysis and for a struct...

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Autores principales: Karen Ruiz, Tarjani M. Thaker, Christopher Agnew, Lakshmi Miller-Vedam, Raphael Trenker, Clara Herrera, Maria Ingaramo, Daniel Toso, Adam Frost, Natalia Jura
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/224769ad2a28455cbf308ca51e75d047
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spelling oai:doaj.org-article:224769ad2a28455cbf308ca51e75d0472021-12-02T15:35:50ZFunctional role of PGAM5 multimeric assemblies and their polymerization into filaments10.1038/s41467-019-08393-w2041-1723https://doaj.org/article/224769ad2a28455cbf308ca51e75d0472019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08393-whttps://doaj.org/toc/2041-1723PGAM5 is a mitochondrial protein phosphatase whose functions include regulation of mitophagy and cell death. Here, the authors use x-ray crystallography and EM to show that PGAM5 forms dodecameric rings and filaments in solution, and find that PGAM5 rings are essential for catalysis and for a structural effect PGAM5 has on mitochondrial membranes, independently of catalytic activity.Karen RuizTarjani M. ThakerChristopher AgnewLakshmi Miller-VedamRaphael TrenkerClara HerreraMaria IngaramoDaniel TosoAdam FrostNatalia JuraNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-16 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Karen Ruiz
Tarjani M. Thaker
Christopher Agnew
Lakshmi Miller-Vedam
Raphael Trenker
Clara Herrera
Maria Ingaramo
Daniel Toso
Adam Frost
Natalia Jura
Functional role of PGAM5 multimeric assemblies and their polymerization into filaments
description PGAM5 is a mitochondrial protein phosphatase whose functions include regulation of mitophagy and cell death. Here, the authors use x-ray crystallography and EM to show that PGAM5 forms dodecameric rings and filaments in solution, and find that PGAM5 rings are essential for catalysis and for a structural effect PGAM5 has on mitochondrial membranes, independently of catalytic activity.
format article
author Karen Ruiz
Tarjani M. Thaker
Christopher Agnew
Lakshmi Miller-Vedam
Raphael Trenker
Clara Herrera
Maria Ingaramo
Daniel Toso
Adam Frost
Natalia Jura
author_facet Karen Ruiz
Tarjani M. Thaker
Christopher Agnew
Lakshmi Miller-Vedam
Raphael Trenker
Clara Herrera
Maria Ingaramo
Daniel Toso
Adam Frost
Natalia Jura
author_sort Karen Ruiz
title Functional role of PGAM5 multimeric assemblies and their polymerization into filaments
title_short Functional role of PGAM5 multimeric assemblies and their polymerization into filaments
title_full Functional role of PGAM5 multimeric assemblies and their polymerization into filaments
title_fullStr Functional role of PGAM5 multimeric assemblies and their polymerization into filaments
title_full_unstemmed Functional role of PGAM5 multimeric assemblies and their polymerization into filaments
title_sort functional role of pgam5 multimeric assemblies and their polymerization into filaments
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/224769ad2a28455cbf308ca51e75d047
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