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vinculin-Arp2/3 相互作用抑制分支状肌动蛋白组装以控制迁移和增殖。

Vinculin-Arp2/3 interaction inhibits branched actin assembly to control migration and proliferation.

机构信息

https://ror.org/05hy3tk52 Laboratory of Structural Biology of the Cell (BIOC), CNRS UMR7654, École Polytechnique, Institut Polytechnique de Paris, Palaiseau, France.

Laboratoire PhysicoChimie Curie UMR168, Institut Curie, Paris Sciences et Lettres, Centre National de la Recherche Scientifique, Sorbonne Université, Paris, France.

出版信息

Life Sci Alliance. 2024 Nov 15;8(2). doi: 10.26508/lsa.202402583. Print 2025 Feb.

Abstract

Vinculin is a mechanotransducer that reinforces links between cell adhesions and linear arrays of actin filaments upon myosin-mediated contractility. Both adhesions to the substratum and neighboring cells, however, are initiated within membrane protrusions that originate from Arp2/3-nucleated branched actin networks. Vinculin has been reported to interact with the Arp2/3 complex, but the role of this interaction remains poorly understood. Here, we compared the phenotypes of vinculin knock-out (KO) cells with those of knock-in (KI-P878A) cells, where the point mutation P878A that impairs the Arp2/3 interaction is introduced in the two vinculin alleles of MCF10A mammary epithelial cells. The interaction of vinculin with Arp2/3 inhibits actin polymerization at membrane protrusions and decreases migration persistence of single cells. In cell monolayers, vinculin recruits Arp2/3 and the vinculin-Arp2/3 interaction participates in cell-cell junction plasticity. Through this interaction, vinculin controls the decision to enter a new cell cycle as a function of cell density.

摘要

粘着斑蛋白是一种机械转导蛋白,在肌球蛋白介导的收缩作用下,它可以增强细胞黏附与肌动蛋白线性排列之间的连接。然而,与基质和相邻细胞的黏附都是由 Arp2/3 引发的分支肌动蛋白网络起始的。已有报道称粘着斑蛋白可与 Arp2/3 复合物相互作用,但该相互作用的作用仍知之甚少。在这里,我们比较了粘着斑蛋白敲除(KO)细胞与带有 P878A 点突变(破坏与 Arp2/3 相互作用)的敲入(KI-P878A)细胞的表型,该点突变被引入 MCF10A 乳腺上皮细胞的两个粘着斑蛋白等位基因中。粘着斑蛋白与 Arp2/3 的相互作用抑制了膜突中的肌动蛋白聚合,并降低了单细胞的迁移持久性。在细胞单层中,粘着斑蛋白募集 Arp2/3,并且粘着斑蛋白-Arp2/3 的相互作用参与了细胞-细胞连接的可塑性。通过这种相互作用,粘着斑蛋白控制着细胞作为细胞密度的函数进入新的细胞周期的决定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0786/11568829/c0a8bd420418/LSA-2024-02583_Fig1.jpg

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