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The plasma membrane as a mechanochemical transducer

机译:等离子体膜作为机械化学换能器

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摘要

Cells are constantly submitted to external mechanical stresses, which they must withstand and respond to. By forming a physical boundary between cells and their environment that is also a biochemical platform, the plasma membrane (PM) is a key interface mediating both cellular response to mechanical stimuli, and subsequent biochemical responses. Here, we review the role of the PM as a mechanosensing structure. We first analyse how the PM responds to mechanical stresses, and then discuss how this mechanical response triggers downstream biochemical responses. The molecular players involved in PM mechanochemical transduction include sensors of membrane unfolding, membrane tension, membrane curvature or membrane domain rearrangement. These sensors trigger signalling cascades fundamental both in healthy scenarios and in diseases such as cancer, which cells harness to maintain integrity, keep or restore homeostasis and adapt to their external environment.
机译:细胞不断提交到外部机械应力,它们必须承受并响应。 通过在细胞和它们的环境之间形成物理边界,该环境也是生物化学平台的,等离子体膜(PM)是介导对机械刺激的细胞反应和随后的生化反应的关键界面。 在这里,我们审查了PM作为机械损伤结构的作用。 我们首先分析PM如何应对机械应力,然后讨论这种机械响应如何触发下游生化反应。 参与PM机械化转导的分子选手包括膜展开,膜张力,膜曲率或膜结构域的传感器。 这些传感器触发了在健康情景和癌症等疾病中触发信号级联的基础,这种细胞用患者保持完整性,保持或恢复稳态,并适应其外部环境。

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