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Cell differentiation through tissue elasticity-coupled, myosin-driven remodeling

机译:通过组织弹性偶联,肌球蛋白驱动的重塑进行细胞分化

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摘要

Cells may lack eyes to see and ears to hear, but cells do seem to have a sense of 'touch' that allows them to feel their microenvironment. This is achieved in part through contractility coupled adhesion to physically flexible 'soft' tissue. Here we summarize some of the known variations in elasticity of solid tissue and review some of the long-term effects of cells 'feeling' this elasticity, focusing on differentiation processes of both committed cell types and stem cells. We then highlight what is known of molecular remodeling in cells under stress on short time scales. Key roles for forces generated by ubiquitous and essential myosin-II motors in feedback remodeling are emphasized throughout.
机译:细胞可能看不到眼睛,耳朵也听不到,但是细胞似乎确实有一种“触摸”的感觉,可以使他们感觉到自己的微环境。这部分是通过将收缩力耦合到物理上柔软的“软”组织上而实现的。在这里,我们总结了一些已知的实体组织弹性变化,并回顾了“感觉”到这种弹性的细胞的一些长期影响,重点是定型细胞类型和干细胞的分化过程。然后,我们重点介绍了短时间内在压力下细胞中分子重塑的知识。整个过程都强调了无处不在的和基本的肌球蛋白II电机产生的力在反馈重塑中的关键作用。

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