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蛰伏待机:静止的肌肉卫星细胞

Lying low but ready for action: the quiescent muscle satellite cell.

机构信息

Department of Developmental and Stem Cell Biology, CNRS URA 2578, Institut Pasteur, Paris, France.

出版信息

FEBS J. 2013 Sep;280(17):4036-50. doi: 10.1111/febs.12372. Epub 2013 Jul 12.

Abstract

The muscle satellite cell is essential for skeletal muscle regeneration. It is located on the muscle fibre, under the basal lamina as a quiescent cell, which becomes activated after injury, when it leaves the fibre, proliferates, and either undergoes myogenesis to form new fibres or reconstitutes the satellite cell pool. In this review, we discuss the cellular environment of the quiescent cell, including the extracellular matrix, which constitutes its niche. Cell adhesion molecules and some signalling pathways reinforce its quiescent state, whereas other signals lead to activation. We discuss how the satellite cell is ready to respond with the appropriate receptors, but protects its quiescence by mechanisms that include immobilization of ligands by extracellular matrix components and synthesis of inhibitors for intracellular signalling pathways and for metalloproteinases that break down the matrix and promote ligand processing and receptor activation. The quiescent satellite cell is also well protected against toxins and oxidative stress. It has a low metabolic rate, as shown by few active mitochondria and anaerobic glycolysis. Different subpopulations of quiescent satellite cells can be distinguished on the basis of cell surface markers and stem cell-like properties. We discuss the latter in the context of the small proportion of satellite cells that express high levels of Pax7, or that are derived from cells that have never activated the Myf5 myogenic determination gene. However, many quiescent satellite cells transcribe Myf5, but do not enter myogenesis because of post-transcriptional regulation, which prevents Myf5 protein accumulation. Post-transcriptional regulation, through microRNA repression of a potential cell cycle activator, further illustrates how these cells are ready for action.

摘要

肌肉卫星细胞对于骨骼肌再生至关重要。它位于肌肉纤维下方的基膜上,作为静止细胞存在,在受到损伤后会被激活,此时它会离开纤维,增殖,并进行肌生成以形成新的纤维,或者重建卫星细胞池。在这篇综述中,我们讨论了静止细胞的细胞环境,包括构成其生态位的细胞外基质。细胞黏附分子和一些信号通路增强了其静止状态,而其他信号则导致其激活。我们讨论了卫星细胞如何通过适当的受体准备好做出反应,但通过包括细胞外基质成分固定配体以及合成细胞内信号通路和基质金属蛋白酶抑制剂来保护其静止状态,这些抑制剂可以分解基质并促进配体加工和受体激活。静止的卫星细胞还受到很好的保护,免受毒素和氧化应激的影响。它的代谢率很低,这表现在很少有活跃的线粒体和无氧糖酵解上。静止卫星细胞可以根据细胞表面标志物和干细胞样特性来区分不同的亚群。我们将在后一种情况下讨论一小部分卫星细胞表达高水平 Pax7 的情况,或者是从未激活 Myf5 成肌决定基因的细胞衍生而来的情况。然而,许多静止的卫星细胞转录 Myf5,但由于转录后调控阻止了 Myf5 蛋白的积累,因此不会进入肌生成。通过 microRNA 抑制潜在的细胞周期激活剂的转录后调控,进一步说明了这些细胞是如何准备好行动的。

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