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The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis

Mitochondria must buffer the risk of proteotoxic stress to preserve bioenergetics, but the role of these mechanisms in disease is poorly understood. Using a proteomics screen, we now show that the mitochondrial unfoldase-peptidase complex ClpXP associates with the oncoprotein survivin and the respir...

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Autores principales: Seo, Jae Ho, Rivadeneira, Dayana B., Caino, M. Cecilia, Chae, Young Chan, Speicher, David W., Tang, Hsin-Yao, Vaira, Valentina, Bosari, Silvano, Palleschi, Alessandro, Rampini, Paolo, Kossenkov, Andrew V., Languino, Lucia R., Altieri, Dario C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4936714/
https://www.ncbi.nlm.nih.gov/pubmed/27389535
http://dx.doi.org/10.1371/journal.pbio.1002507
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author Seo, Jae Ho
Rivadeneira, Dayana B.
Caino, M. Cecilia
Chae, Young Chan
Speicher, David W.
Tang, Hsin-Yao
Vaira, Valentina
Bosari, Silvano
Palleschi, Alessandro
Rampini, Paolo
Kossenkov, Andrew V.
Languino, Lucia R.
Altieri, Dario C.
author_facet Seo, Jae Ho
Rivadeneira, Dayana B.
Caino, M. Cecilia
Chae, Young Chan
Speicher, David W.
Tang, Hsin-Yao
Vaira, Valentina
Bosari, Silvano
Palleschi, Alessandro
Rampini, Paolo
Kossenkov, Andrew V.
Languino, Lucia R.
Altieri, Dario C.
author_sort Seo, Jae Ho
collection PubMed
description Mitochondria must buffer the risk of proteotoxic stress to preserve bioenergetics, but the role of these mechanisms in disease is poorly understood. Using a proteomics screen, we now show that the mitochondrial unfoldase-peptidase complex ClpXP associates with the oncoprotein survivin and the respiratory chain Complex II subunit succinate dehydrogenase B (SDHB) in mitochondria of tumor cells. Knockdown of ClpXP subunits ClpP or ClpX induces the accumulation of misfolded SDHB, impairing oxidative phosphorylation and ATP production while activating “stress” signals of 5′ adenosine monophosphate-activated protein kinase (AMPK) phosphorylation and autophagy. Deregulated mitochondrial respiration induced by ClpXP targeting causes oxidative stress, which in turn reduces tumor cell proliferation, suppresses cell motility, and abolishes metastatic dissemination in vivo. ClpP is universally overexpressed in primary and metastatic human cancer, correlating with shortened patient survival. Therefore, tumors exploit ClpXP-directed proteostasis to maintain mitochondrial bioenergetics, buffer oxidative stress, and enable metastatic competence. This pathway may provide a “drugable” therapeutic target in cancer.
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spelling pubmed-49367142016-07-22 The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis Seo, Jae Ho Rivadeneira, Dayana B. Caino, M. Cecilia Chae, Young Chan Speicher, David W. Tang, Hsin-Yao Vaira, Valentina Bosari, Silvano Palleschi, Alessandro Rampini, Paolo Kossenkov, Andrew V. Languino, Lucia R. Altieri, Dario C. PLoS Biol Research Article Mitochondria must buffer the risk of proteotoxic stress to preserve bioenergetics, but the role of these mechanisms in disease is poorly understood. Using a proteomics screen, we now show that the mitochondrial unfoldase-peptidase complex ClpXP associates with the oncoprotein survivin and the respiratory chain Complex II subunit succinate dehydrogenase B (SDHB) in mitochondria of tumor cells. Knockdown of ClpXP subunits ClpP or ClpX induces the accumulation of misfolded SDHB, impairing oxidative phosphorylation and ATP production while activating “stress” signals of 5′ adenosine monophosphate-activated protein kinase (AMPK) phosphorylation and autophagy. Deregulated mitochondrial respiration induced by ClpXP targeting causes oxidative stress, which in turn reduces tumor cell proliferation, suppresses cell motility, and abolishes metastatic dissemination in vivo. ClpP is universally overexpressed in primary and metastatic human cancer, correlating with shortened patient survival. Therefore, tumors exploit ClpXP-directed proteostasis to maintain mitochondrial bioenergetics, buffer oxidative stress, and enable metastatic competence. This pathway may provide a “drugable” therapeutic target in cancer. Public Library of Science 2016-07-07 /pmc/articles/PMC4936714/ /pubmed/27389535 http://dx.doi.org/10.1371/journal.pbio.1002507 Text en © 2016 Seo et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Seo, Jae Ho
Rivadeneira, Dayana B.
Caino, M. Cecilia
Chae, Young Chan
Speicher, David W.
Tang, Hsin-Yao
Vaira, Valentina
Bosari, Silvano
Palleschi, Alessandro
Rampini, Paolo
Kossenkov, Andrew V.
Languino, Lucia R.
Altieri, Dario C.
The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis
title The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis
title_full The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis
title_fullStr The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis
title_full_unstemmed The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis
title_short The Mitochondrial Unfoldase-Peptidase Complex ClpXP Controls Bioenergetics Stress and Metastasis
title_sort mitochondrial unfoldase-peptidase complex clpxp controls bioenergetics stress and metastasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4936714/
https://www.ncbi.nlm.nih.gov/pubmed/27389535
http://dx.doi.org/10.1371/journal.pbio.1002507
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