Taoka Hiroki, Murakawa Tadayoshi, Kawaguchi Kohei, Koizumi Michiko, Kaminishi Tatsuya, Sakamaki Yuriko, Tanaka Kaori, Harada Akihito, Inoue Keiichi, Kanki Tomotake, Ohkawa Yasuyuki, Fujita Naonobu
Cell Biology Center, Institute of Integrated Research, Institute of Science Tokyo, Tokyo, Japan.
Biological Science Research Laboratories, Kao Corporation, Tokyo, Japan.
Elife. 2025 Aug 13;14:RP105834. doi: 10.7554/eLife.105834.
Differentiated muscle cells contain myofibrils and well-organized organelles, enabling powerful contractions. Muscle cell reorganization occurs in response to various physiological stimuli; however, the mechanisms behind this remodeling remain enigmatic due to the lack of a genetically trackable system. Previously, we reported that a subset of larval muscle cells is remodeled into adult abdominal muscle through an autophagy-dependent mechanism in . To unveil the underlying mechanisms of this remodeling, we performed a comparative time-course RNA-seq analysis of isolated muscle cells with or without autophagy. It revealed both transcriptional dynamics independent of autophagy and highlighted the significance of BNIP3-mediated mitophagy in muscle remodeling. Mechanistically, we found that BNIP3 recruits autophagic machinery to mitochondria through its LC3-interacting motif and minimal essential region, which interact with Atg8a and Atg18a, respectively. Loss of BNIP3 leads to a substantial accumulation of larval mitochondria, ultimately impairing muscle remodeling. In summary, this study demonstrates that BNIP3-dependent mitophagy is critical for orchestrating the dynamic process of muscle remodeling.
分化的肌肉细胞含有肌原纤维和组织良好的细胞器,能够进行有力的收缩。肌肉细胞重组是对各种生理刺激的反应;然而,由于缺乏可遗传追踪的系统,这种重塑背后的机制仍然不明。此前,我们报道了幼虫肌肉细胞的一个亚群通过自噬依赖机制在[具体内容缺失]中重塑为成虫腹肌。为了揭示这种重塑的潜在机制,我们对有或没有自噬的分离肌肉细胞进行了比较性的时间进程RNA测序分析。它揭示了独立于自噬的转录动态,并突出了BNIP3介导的线粒体自噬在肌肉重塑中的重要性。从机制上讲,我们发现BNIP3通过其与LC3相互作用的基序和最小必需区域将自噬机制招募到线粒体,这两个区域分别与Atg8a和Atg18a相互作用。BNIP3的缺失导致幼虫线粒体大量积累,最终损害肌肉重塑。总之,这项研究表明BNIP3依赖性线粒体自噬对于协调肌肉重塑的动态过程至关重要。