Purohit Gunjan, Dhawan Jyotsna
Centre for Cellular and Molecular Biology, Hyderabad, India.
Institute for Stem Cell Science and Regenerative Medicine, Bengaluru, India.
Front Cell Dev Biol. 2019 Dec 6;7:312. doi: 10.3389/fcell.2019.00312. eCollection 2019.
Emerging evidence suggests that metabolites are important regulators of skeletal muscle stem cell (MuSC) function and fate. While highly proliferative in early life, MuSCs reside in adult skeletal muscle tissue in a quiescent and metabolically depressed state, but are critical for the homeostatic maintenance and regenerative response of the tissue to damage. It is well established that metabolic activity in MuSC changes with their functional activation, but the spatiotemporal links between physiological metabolism and stem cell metabolism require explicit delineation. The quiescent MuSC is defined by a specific metabolic state, which is controlled by intrinsic and extrinsic factors during physiological and pathological tissue dynamics. However, the extent of tissue and organismal level changes driven by alteration in metabolic state of quiescent MuSC is currently not well defined. In addition to their role as biosynthetic precursors and signaling molecules, metabolites are key regulators of epigenetic mechanisms. Emerging evidence points to metabolic control of epigenetic mechanisms in MuSC and their impact on muscle regenerative capacity. In this review, we explore the links between cell-intrinsic, tissue level, and systemic metabolic state in the context of MuSC metabolic state, quiescence, and tissue homeostasis to highlight unanswered questions.
新出现的证据表明,代谢物是骨骼肌干细胞(MuSC)功能和命运的重要调节因子。MuSCs在生命早期具有高度增殖能力,成年后则以静止和代谢抑制状态存在于骨骼肌组织中,但对组织的稳态维持和损伤后的再生反应至关重要。众所周知,MuSC中的代谢活动会随着其功能激活而发生变化,但生理代谢与干细胞代谢之间的时空联系需要明确界定。静止的MuSC由特定的代谢状态定义,在生理和病理组织动态过程中,该状态受内在和外在因素控制。然而,目前尚不清楚静止MuSC代谢状态的改变在组织和机体水平上所驱动的变化程度。除了作为生物合成前体和信号分子的作用外,代谢物还是表观遗传机制的关键调节因子。新出现的证据表明,MuSC中表观遗传机制的代谢控制及其对肌肉再生能力的影响。在这篇综述中,我们在MuSC代谢状态、静止和组织稳态的背景下,探讨细胞内在、组织水平和全身代谢状态之间的联系,以突出未解决的问题。