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How cells sense their own shape - mechanisms to probe cell geometry and their implications in cellular organization and function

机译:细胞如何感觉到自己的形状 - 探测细胞几何体的机制及其在蜂窝组织和功能中的影响

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摘要

Cells come in a variety of shapes that most often underlie their functions. Regulation of cell morphogenesis implies that there are mechanisms for shape sensing that still remain poorly appreciated. Global and local cell geometry features, such as aspect ratio, size or membrane curvature, may be probed by intracellular modules, such as the cytoskeleton, reaction-diffusion systems or molecular complexes. In multicellular tissues, cell shape emerges as an important means to transduce tissue-inherent chemical and mechanical cues into intracellular organization. One emergent paradigm is that cell-shape sensing is most often based upon mechanisms of self-organization, rather than determinism. Here, we review relevant work that has elucidated some of the core principles of how cellular geometry may be conveyed into spatial information to guide processes, such as polarity, signaling, morphogenesis and division-plane positioning.
机译:细胞有多种形状,最常常脱颖而出。 细胞形态发生的调节意味着存在形状感测的机制仍然仍然不受欢迎。 可以通过细胞内模块探测诸如纵横比,尺寸或膜曲率的全局和局部细胞几何特征,例如细胞骨架,反应扩散系统或分子复合物。 在多细胞组织中,细胞形状作为将组织固有的化学和机械提示转化为细胞内组织的重要手段。 一种紧急范式是细胞形式感测最常见的是基于自组织的机制,而不是确定性。 在这里,我们审查了阐明了如何将蜂窝几何形状传送到空间信息的一些核心原理的相关工作,以指导过程,例如极性,信号传导,形态发生和分裂平面定位。

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