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UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting

Cancer cachexia is a lethal metabolic syndrome featuring muscle wasting with preferential loss of fast-twitching muscle mass through an undefined mechanism. Here, we show that cancer induces muscle wasting by selectively degrading myosin heavy chain (MHC) subtypes IIb and IIx through E3 ligase UBR2-...

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Autores principales: Gao, Song, Zhang, Guohua, Zhang, Zicheng, Zhu, James Z., Li, Li, Zhou, Yong, Rodney, George G., Abo-Zahrah, Reem S., Anderson, Lindsey, Garcia, Jose M., Kwon, Yong Tae, Li, Yi-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9618047/
https://www.ncbi.nlm.nih.gov/pubmed/36252004
http://dx.doi.org/10.1073/pnas.2200215119
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author Gao, Song
Zhang, Guohua
Zhang, Zicheng
Zhu, James Z.
Li, Li
Zhou, Yong
Rodney, George G.
Abo-Zahrah, Reem S.
Anderson, Lindsey
Garcia, Jose M.
Kwon, Yong Tae
Li, Yi-Ping
author_facet Gao, Song
Zhang, Guohua
Zhang, Zicheng
Zhu, James Z.
Li, Li
Zhou, Yong
Rodney, George G.
Abo-Zahrah, Reem S.
Anderson, Lindsey
Garcia, Jose M.
Kwon, Yong Tae
Li, Yi-Ping
author_sort Gao, Song
collection PubMed
description Cancer cachexia is a lethal metabolic syndrome featuring muscle wasting with preferential loss of fast-twitching muscle mass through an undefined mechanism. Here, we show that cancer induces muscle wasting by selectively degrading myosin heavy chain (MHC) subtypes IIb and IIx through E3 ligase UBR2-mediated ubiquitylation. Induction of MHC loss and atrophy in C2C12 myotubes and mouse tibialis anterior (TA) by murine cancer cells required UBR2 up-regulation by cancer. Genetic gain or loss of UBR2 function inversely altered MHC level and muscle mass in TA of tumor-free mice. UBR2 selectively interacted with and ubiquitylated MHC-IIb and MHC-IIx through its substrate recognition and catalytic domain, respectively, in C2C12 myotubes. Elevation of UBR2 in muscle of tumor-bearing or free mice caused loss of MHC-IIb and MHC-IIx but not MHC-I and MHC-IIa or other myofibrillar proteins, including α-actin, troponin, tropomyosin, and tropomodulin. Muscle-specific knockout of UBR2 spared KPC tumor-bearing mice from losing MHC-IIb and MHC-IIx, fast-twitching muscle mass, cross-sectional area, and contractile force. The rectus abdominis (RA) muscle of patients with cachexia-prone cancers displayed a selective reduction of MHC-IIx in correlation with higher UBR2 levels. These data suggest that UBR2 is a regulator of MHC-IIb/IIx essential for cancer-induced muscle wasting, and that therapeutic interventions can be designed by blocking UBR2 up-regulation by cancer.
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spelling pubmed-96180472023-04-17 UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting Gao, Song Zhang, Guohua Zhang, Zicheng Zhu, James Z. Li, Li Zhou, Yong Rodney, George G. Abo-Zahrah, Reem S. Anderson, Lindsey Garcia, Jose M. Kwon, Yong Tae Li, Yi-Ping Proc Natl Acad Sci U S A Biological Sciences Cancer cachexia is a lethal metabolic syndrome featuring muscle wasting with preferential loss of fast-twitching muscle mass through an undefined mechanism. Here, we show that cancer induces muscle wasting by selectively degrading myosin heavy chain (MHC) subtypes IIb and IIx through E3 ligase UBR2-mediated ubiquitylation. Induction of MHC loss and atrophy in C2C12 myotubes and mouse tibialis anterior (TA) by murine cancer cells required UBR2 up-regulation by cancer. Genetic gain or loss of UBR2 function inversely altered MHC level and muscle mass in TA of tumor-free mice. UBR2 selectively interacted with and ubiquitylated MHC-IIb and MHC-IIx through its substrate recognition and catalytic domain, respectively, in C2C12 myotubes. Elevation of UBR2 in muscle of tumor-bearing or free mice caused loss of MHC-IIb and MHC-IIx but not MHC-I and MHC-IIa or other myofibrillar proteins, including α-actin, troponin, tropomyosin, and tropomodulin. Muscle-specific knockout of UBR2 spared KPC tumor-bearing mice from losing MHC-IIb and MHC-IIx, fast-twitching muscle mass, cross-sectional area, and contractile force. The rectus abdominis (RA) muscle of patients with cachexia-prone cancers displayed a selective reduction of MHC-IIx in correlation with higher UBR2 levels. These data suggest that UBR2 is a regulator of MHC-IIb/IIx essential for cancer-induced muscle wasting, and that therapeutic interventions can be designed by blocking UBR2 up-regulation by cancer. National Academy of Sciences 2022-10-17 2022-10-25 /pmc/articles/PMC9618047/ /pubmed/36252004 http://dx.doi.org/10.1073/pnas.2200215119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Gao, Song
Zhang, Guohua
Zhang, Zicheng
Zhu, James Z.
Li, Li
Zhou, Yong
Rodney, George G.
Abo-Zahrah, Reem S.
Anderson, Lindsey
Garcia, Jose M.
Kwon, Yong Tae
Li, Yi-Ping
UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting
title UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting
title_full UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting
title_fullStr UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting
title_full_unstemmed UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting
title_short UBR2 targets myosin heavy chain IIb and IIx for degradation: Molecular mechanism essential for cancer-induced muscle wasting
title_sort ubr2 targets myosin heavy chain iib and iix for degradation: molecular mechanism essential for cancer-induced muscle wasting
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9618047/
https://www.ncbi.nlm.nih.gov/pubmed/36252004
http://dx.doi.org/10.1073/pnas.2200215119
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