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

Author:

Gao Song1,Zhang Guohua1,Zhang Zicheng1,Zhu James Z.1,Li Li1,Zhou Yong1ORCID,Rodney George G.2ORCID,Abo-Zahrah Reem S.2,Anderson Lindsey34,Garcia Jose M.34ORCID,Kwon Yong Tae5,Li Yi-Ping1ORCID

Affiliation:

1. Department of Integrative Biology and Pharmacology, University of Texas Health Science Center at Houston, Houston, TX 77030

2. Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, TX 77030

3. Geriatric Research, Education, and Clinical Center, VA Puget Sound Health Care System, Seattle, WA98018

4. Department of Medicine, Division of Gerontology and Geriatric Medicine, University of Washington, Seattle, WA98108

5. World Class University Program, Department of Molecular Medicine and Biopharmaceutical Sciences, Graduate School of Convergence Science and Technology and College of Medicine, Seoul National University, Seoul 110-799, Korea

Abstract

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.

Funder

HHS | NIH | National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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