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首页> 外文期刊>Science Advances >Autophagy induction in atrophic muscle cells requires ULK1 activation by TRIM32 through unanchored K63-linked polyubiquitin chains
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Autophagy induction in atrophic muscle cells requires ULK1 activation by TRIM32 through unanchored K63-linked polyubiquitin chains

机译:萎缩性肌细胞中的自噬诱导需要TRIM32通过未锚定的K63连接的多聚泛素链激活ULK1

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Optimal autophagic activity is crucial to maintain muscle integrity, with either reduced or excessive levels leading to specific myopathies. LGMD2H is a muscle dystrophy caused by mutations in the ubiquitin ligase TRIM32, whose function in muscles remains not fully understood. Here, we show that TRIM32 is required for the induction of muscle autophagy in atrophic conditions using both in vitro and in vivo mouse models. Trim32 inhibition results in a defective autophagy response to muscle atrophy, associated with increased ROS and MuRF1 levels. The proautophagic function of TRIM32 relies on its ability to bind the autophagy proteins AMBRA1 and ULK1 and stimulate ULK1 activity via unanchored K63-linked polyubiquitin. LGMD2H-causative mutations impair TRIM32’s ability to bind ULK1 and induce autophagy. Collectively, our study revealed a role for TRIM32 in the regulation of muscle autophagy in response to atrophic stimuli, uncovering a previously unidentified mechanism by which ubiquitin ligases activate autophagy regulators.
机译:最佳的自噬活性对于维持肌肉的完整性至关重要,无论水平降低还是导致过度的肌病。 LGMD2H是由泛素连接酶TRIM32中的突变引起的肌肉营养不良,该蛋白在肌肉中的功能尚不完全清楚。在这里,我们显示了使用体外和体内小鼠模型在萎缩性条件下诱导肌肉自噬需要TRIM32。 Trim32抑制导致对肌肉萎缩的自噬反应性缺陷,与ROS和MuRF1水平升高相关。 TRIM32的自噬功能依赖于其结合自噬蛋白AMBRA1和ULK1并通过未锚定的K63连接的多聚泛素刺激ULK1活性的能力。 LGMD2H致病性突变会损害TRIM32结合ULK1并诱导自噬的能力。总的来说,我们的研究揭示了TRIM32在对萎缩性刺激作出反应的肌肉自噬调节中的作用,揭示了一种尚未确定的泛素连接酶激活自噬调节剂的机制。

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