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整合素的多样性为力学转导带来了特异性。

Integrin diversity brings specificity in mechanotransduction.

机构信息

Institut Pasteur Paris CNRS UMR3691, Cell Polarity, Migration and Cancer Unit, Equipe Labellisée Ligue Contre le Cancer, Paris Cedex 15, France.

Université Paris Descartes, Sorbonne Paris Cité, Paris, 75006, France.

出版信息

Biol Cell. 2018 Mar;110(3):49-64. doi: 10.1111/boc.201700060. Epub 2018 Feb 15.


DOI:10.1111/boc.201700060
PMID:29388220
Abstract

Cells sense and respond to the biochemical and physical properties of the extracellular matrix (ECM) through adhesive structures that bridge the cell cytoskeleton and the surrounding environment. Integrin-mediated adhesions interact with specific ECM proteins and sense the rigidity of the substrate to trigger signalling pathways that, in turn, regulate cellular processes such as adhesion, motility, proliferation and differentiation. This process, called mechanotransduction, influenced by the involvement of different integrin subtypes and their high ECM-ligand binding specificity, contributes to the cell-type-specific mechanical responses. In this review, we describe how the expression of particular integrin subtypes affects cellular adaptation to substrate rigidity. We then explain the role of integrins and associated proteins in mechanotransduction, focusing on their specificity in mechanosensing and force transmission.

摘要

细胞通过连接细胞骨架和周围环境的黏附结构来感知和响应细胞外基质(ECM)的生化和物理特性。整合素介导的黏附与特定的 ECM 蛋白相互作用,并感知基质的刚性,从而触发信号通路,进而调节细胞过程,如黏附、迁移、增殖和分化。这个过程被称为力学转导,它受到不同整合素亚型的参与及其与 ECM 配体高结合特异性的影响,有助于细胞类型特异性的机械响应。在这篇综述中,我们描述了特定整合素亚型的表达如何影响细胞对基质刚性的适应性。然后,我们解释了整合素和相关蛋白在力学转导中的作用,重点介绍了它们在机械感知和力传递中的特异性。

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