Centre for Cutaneous Research, Barts and the London School of Medicine and Dentistry, Queen Mary, University of London, London E1 2AT, UK.
Int J Biochem Cell Biol. 2012 Dec;44(12):2233-7. doi: 10.1016/j.biocel.2012.09.003. Epub 2012 Sep 12.
Self-renewal and differentiation are fundamental stem cell fate decisions, which are essential for normal tissue development, homeostasis, and repair. Extracellular signals, including mechanical and biophysical forces, play an important role in directing the behaviour of a variety of stem and progenitor cells, and recent studies have provided new insights into the molecular mechanisms of these responses. While integrin receptors transmit forces from the extracellular matrix to the cell, the actin cytoskeleton and Rho-GTPases, mediate downstream signal transduction. To affect stem cell fate, however, these signalling cascades must ultimately be transduced into specific transcription responses. Serum response factor (SRF) and yes-associated protein (YAP) are two examples of mechano-sensitive transcription factors, which have recently been implicated in epidermal and mesenchymal stem cell differentiation. Significant challenges for future studies will likely include measuring the relevant biophysical forces experienced by cells in vivo and translating the current knowledge into regenerative therapies.
自我更新和分化是干细胞命运的基本决定因素,对于正常组织发育、内稳态和修复至关重要。细胞外信号,包括机械和生物物理力,在指导各种干细胞和祖细胞的行为方面发挥着重要作用,最近的研究为这些反应的分子机制提供了新的见解。虽然整合素受体将细胞外基质的力传递到细胞内,但肌动蛋白细胞骨架和 Rho-GTPases 介导下游信号转导。然而,为了影响干细胞命运,这些信号级联最终必须转化为特定的转录反应。血清反应因子 (SRF) 和 yes 相关蛋白 (YAP) 是两种机械敏感转录因子的例子,它们最近与表皮和间充质干细胞分化有关。未来研究的重大挑战可能包括测量细胞在体内经历的相关生物物理力,并将现有知识转化为再生疗法。