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内质网-线粒体相互作用中钙稳态的调节:对骨骼肌萎缩的影响

Regulation of calcium homeostasis in endoplasmic reticulum-mitochondria crosstalk: implications for skeletal muscle atrophy.

作者信息

Li Xuexin, Zhao Xin, Qin Zhengshan, Li Jie, Sun Bowen, Liu Li

机构信息

Department of Anesthesiology, The Affiliated Hospital of Southwest Medical University, No. 25, Taiping Road, Lu Zhou, Luzhou, Sichuan, 646000, China.

Anesthesiology and Critical Care Medicine Key Laboratory of Luzhou, Southwest Medical University, Luzhou, Sichuan Province, 646000, China.

出版信息

Cell Commun Signal. 2025 Jan 9;23(1):17. doi: 10.1186/s12964-024-02014-w.

Abstract

This review comprehensively explores the critical role of calcium as an essential small-molecule biomessenger in skeletal muscle function. Calcium is vital for both regulating muscle excitation-contraction coupling and for the development, maintenance, and regeneration of muscle cells. The orchestrated release of calcium from the endoplasmic reticulum (ER) is mediated by receptors such as the ryanodine receptor (RYR) and inositol 1,4,5-trisphosphate receptor (IP3R), which is crucial for skeletal muscle contraction. The sarcoendoplasmic reticulum calcium ATPase (SERCA) pump plays a key role in recapturing calcium, enabling the muscle to return to a relaxed state. A pivotal aspect of calcium homeostasis involves the dynamic interaction between mitochondria and the ER. This interaction includes local calcium signaling facilitated by RYRs and a "quasi-synaptic" mechanism formed by the IP3R-Grp75-VDAC/MCU axis, allowing rapid calcium uptake by mitochondria with minimal interference at the cytoplasmic level. Disruption of calcium transport can lead to mitochondrial calcium overload, triggering the opening of the mitochondrial permeability transition pore and subsequent release of reactive oxygen species and cytochrome C, ultimately resulting in muscle damage and atrophy. This review explores the complex relationship between the ER and mitochondria and how these organelles regulate calcium levels in skeletal muscle, aiming to provide valuable perspectives for future research on the pathogenesis of muscle diseases and the development of prevention strategies.

摘要

本综述全面探讨了钙作为一种必需的小分子生物信使在骨骼肌功能中的关键作用。钙对于调节肌肉兴奋 - 收缩偶联以及肌肉细胞的发育、维持和再生都至关重要。内质网(ER)中钙的有序释放由诸如兰尼碱受体(RYR)和肌醇1,4,5 - 三磷酸受体(IP3R)等受体介导,这对骨骼肌收缩至关重要。肌浆网钙ATP酶(SERCA)泵在重新摄取钙方面起关键作用,使肌肉能够恢复到松弛状态。钙稳态的一个关键方面涉及线粒体与内质网之间的动态相互作用。这种相互作用包括由RYR促进的局部钙信号传导以及由IP3R - Grp75 - VDAC/MCU轴形成的“准突触”机制,使得线粒体能够在对细胞质水平干扰最小的情况下快速摄取钙。钙转运的破坏可导致线粒体钙超载,触发线粒体通透性转换孔的开放以及随后活性氧和细胞色素C的释放,最终导致肌肉损伤和萎缩。本综述探讨了内质网与线粒体之间的复杂关系以及这些细胞器如何调节骨骼肌中的钙水平,旨在为未来关于肌肉疾病发病机制的研究和预防策略的制定提供有价值的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8139/11721261/2f7fcf1bc10a/12964_2024_2014_Fig1_HTML.jpg

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