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PINK1 缺乏改变肌肉干细胞命运决定和肌肉再生能力。

PINK1 deficiency alters muscle stem cell fate decision and muscle regenerative capacity.

机构信息

Interdisciplinary School of Health Sciences, Faculty of Health Sciences, University of Ottawa, Ottawa, ON, Canada.

Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, ON, Canada.

出版信息

Stem Cell Reports. 2024 May 14;19(5):673-688. doi: 10.1016/j.stemcr.2024.03.004. Epub 2024 Apr 4.

Abstract

Maintenance of mitochondrial function plays a crucial role in the regulation of muscle stem cell (MuSC), but the underlying mechanisms remain ill defined. In this study, we monitored mitophagy in MuSCS under various myogenic states and examined the role of PINK1 in maintaining regenerative capacity. Results indicate that quiescent MuSCs actively express mitophagy genes and exhibit a measurable mitophagy flux and prominent mitochondrial localization to autophagolysosomes, which become rapidly decreased during activation. Genetic disruption of Pink1 in mice reduces PARKIN recruitment to mitochondria and mitophagy in quiescent MuSCs, which is accompanied by premature activation/commitment at the expense of self-renewal and progressive loss of muscle regeneration, but unhindered proliferation and differentiation capacity. Results also show that impaired fate decisions in PINK1-deficient MuSCs can be restored by scavenging excess mitochondrial ROS. These data shed light on the regulation of mitophagy in MuSCs and position PINK1 as an important regulator of their mitochondrial properties and fate decisions.

摘要

线粒体功能的维持在肌肉干细胞(MuSC)的调节中起着至关重要的作用,但潜在的机制仍未明确。在这项研究中,我们监测了各种成肌状态下 MuSC 中的自噬,并研究了 PINK1 在维持再生能力方面的作用。结果表明,静止的 MuSC 积极表达自噬基因,并表现出可测量的自噬通量和明显的线粒体定位到自噬溶酶体,在激活过程中这些迅速减少。在小鼠中敲除 Pink1 会减少 PARKIN 向线粒体的募集和静止 MuSC 中的自噬,这伴随着以自我更新为代价的过早激活/承诺和进行性丧失肌肉再生,但增殖和分化能力不受影响。结果还表明,通过清除多余的线粒体 ROS,可以恢复 PINK1 缺陷的 MuSC 中受损的命运决定。这些数据揭示了 MuSC 中自噬的调节,并将 PINK1 定位为其线粒体特性和命运决定的重要调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a84/11103785/b096e5728c5b/gr1.jpg

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