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半胱氨酸天冬氨酸蛋白酶、Yes 相关蛋白与力学之间的相互作用:生与死之间的可能转换?

Interplay between caspase, Yes-associated protein, and mechanics: A possible switch between life and death?

机构信息

Mechanobiology Institute, Level 5, T-lab Building, 5A Engineering Drive 1, Singapore, 117411.

Mechanobiology Institute, Level 5, T-lab Building, 5A Engineering Drive 1, Singapore, 117411; Department of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore, 117543.

出版信息

Curr Opin Cell Biol. 2020 Dec;67:141-146. doi: 10.1016/j.ceb.2020.10.010. Epub 2020 Nov 12.

Abstract

Organism development requires fine-tuning of the cell number by apoptosis and cell division, as well as proper cell fate specification. These processes are achieved through the integration of intracellular signals and intercellular interactions with neighboring cells as well as the extracellular environment. Apoptosis, a form of cell death typically associated with development and homeostasis, is mainly regulated by the caspase family of proteases. Although caspases are known to initiate and execute apoptosis, it is also known that low caspase levels have a broad spectrum of nonapoptotic functions, including differentiation and organ growth. These different roles of caspases raise intriguing questions: how are caspase levels regulated and what defines the balance between life and death? In this review, we focus on some recent findings that highlight how nonlethal levels of caspase activity, transcriptional coregulator Yes-associated protein (YAP), and mechanical factors influence each other in determining cell fate. We further discuss a possibility that the mechanical signals encountered by cells could regulate the level of caspase activity by mechanics through YAP and, in turn, how this determines whether a cell is susceptible or resistant to undergoing apoptosis in response to cell death stimuli.

摘要

生物体的发育需要通过细胞凋亡和细胞分裂来精细地调控细胞数量,并确定适当的细胞命运。这些过程是通过整合细胞内信号以及与邻近细胞和细胞外环境的细胞间相互作用来实现的。细胞凋亡是一种通常与发育和稳态相关的细胞死亡形式,主要由半胱天冬酶家族蛋白酶调控。尽管半胱天冬酶被认为可以启动和执行细胞凋亡,但也有研究表明,低水平的半胱天冬酶具有广泛的非凋亡功能,包括分化和器官生长。这些半胱天冬酶的不同作用提出了一些有趣的问题:半胱天冬酶水平是如何调节的,以及生与死之间的平衡是如何定义的?在这篇综述中,我们重点介绍了一些最近的发现,这些发现强调了细胞凋亡水平、转录共激活因子 Yes 相关蛋白 (YAP) 和机械因素如何通过彼此相互作用来决定细胞命运。我们进一步讨论了一种可能性,即细胞遇到的机械信号可能通过 YAP 来调节半胱天冬酶活性的水平,进而决定细胞对细胞死亡刺激的凋亡敏感性或抗性。

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