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线粒体自噬受体BNIP3L/Nix协调核钙信号传导以调节肌肉表型。

The mitophagy receptor BNIP3L/Nix coordinates nuclear calcium signaling to modulate the muscle phenotype.

作者信息

Field Jared T, Chapman Donald, Hai Yan, Ghavami Saeid, West Adrian R, Ozerklig Berkay, Saleem Ayesha, Kline Julia, Mendelson Asher A, Kindrachuk Jason, Triggs-Raine Barbara, Gordon Joseph W

机构信息

Department of Human Anatomy and Cell Science, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, Canada.

Children's Hospital Research Institute of Manitoba, Winnipeg, Canada.

出版信息

Autophagy. 2025 Jul;21(7):1544-1555. doi: 10.1080/15548627.2025.2476872. Epub 2025 Mar 24.

Abstract

Mitochondrial quality control is critical in muscle to ensure contractile and metabolic function. BNIP3L/Nix is a BCL2 member, a mitophagy receptor, and has been implicated in muscle atrophy. Human genome-wide association studies (GWAS) suggest altered BNIP3L expression could predispose to mitochondrial disease. To investigate BNIP3L function, we generated a muscle-specific knockout model. knockout mice displayed a ragged-red fiber phenotype, along with accumulation of mitochondria and endo/sarcoplasmic reticulum with altered morphology. Intriguingly, knockout mice were more insulin sensitive with a corresponding increase in glycogen-rich muscle fibers. Kinome and gene expression analyses revealed that knockout impairs NFAT and MSTN (myostatin) signaling, with alterations in muscle fiber-type and evidence of regeneration. Mechanistic experiments demonstrated that BNIP3L modulates mitophagy, along with reticulophagy leading to altered nuclear calcium signaling. Collectively, these observations identify novel roles for BNIP3L coordinating selective autophagy, oxidative gene expression, and signaling pathways that maintain the muscle phenotype.

摘要

线粒体质量控制对于肌肉确保收缩和代谢功能至关重要。BNIP3L/Nix是一种BCL2家族成员,一种线粒体自噬受体,并且与肌肉萎缩有关。全基因组关联研究(GWAS)表明,BNIP3L表达的改变可能易患线粒体疾病。为了研究BNIP3L的功能,我们构建了一个肌肉特异性敲除模型。敲除小鼠表现出破碎红纤维表型,同时伴有线粒体和形态改变的内质网/肌浆网的积累。有趣的是,敲除小鼠对胰岛素更敏感,富含糖原的肌纤维相应增加。激酶组和基因表达分析表明,敲除会损害NFAT和MSTN(肌肉生长抑制素)信号传导,导致肌纤维类型改变并有再生迹象。机制实验表明,BNIP3L调节线粒体自噬以及网状自噬,导致核钙信号改变。总的来说,这些观察结果确定了BNIP3L在协调选择性自噬、氧化基因表达和维持肌肉表型的信号通路中的新作用。

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