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PARK2/Parkin-mediated mitochondrial clearance contributes to proteasome activation during slow-twitch muscle atrophy via NFE2L1 nuclear translocation
Authors:Norihiko Furuya  Shin-Ichi Ikeda  Shigeto Sato  Sanae Soma  Junji Ezaki  Juan Alejandro Oliva Trejo  Mitsue Takeda-Ezaki  Tsutomu Fujimura  Eri Arikawa-Hirasawa  Norihiro Tada  Masaaki Komatsu  Keiji Tanaka  Eiki Kominami  Nobutaka Hattori  Takashi Ueno
Abstract:Skeletal muscle atrophy is thought to result from hyperactivation of intracellular protein degradation pathways, including autophagy and the ubiquitin–proteasome system. However, the precise contributions of these pathways to muscle atrophy are unclear. Here, we show that an autophagy deficiency in denervated slow-twitch soleus muscles delayed skeletal muscle atrophy, reduced mitochondrial activity, and induced oxidative stress and accumulation of PARK2/Parkin, which participates in mitochondrial quality control (PARK2-mediated mitophagy), in mitochondria. Soleus muscles from denervated Park2 knockout mice also showed resistance to denervation, reduced mitochondrial activities, and increased oxidative stress. In both autophagy-deficient and Park2-deficient soleus muscles, denervation caused the accumulation of polyubiquitinated proteins. Denervation induced proteasomal activation via NFE2L1 nuclear translocation in control mice, whereas it had little effect in autophagy-deficient and Park2-deficient mice. These results suggest that PARK2-mediated mitophagy plays an essential role in the activation of proteasomes during denervation atrophy in slow-twitch muscles.
Keywords:PARK2-mediated mitophagy   skeletal muscle atrophy   proteasome   NFE2L1   slow-twitch muscle   autophagy   mitochondria   knockout mouse
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