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三维基质黏附反馈控制核力耦联以驱动侵袭性细胞迁移。

3D matrix adhesion feedback controls nuclear force coupling to drive invasive cell migration.

机构信息

Institute of Systems, Molecular, and Integrative Biology, University of Liverpool, Liverpool, UK.

CRUK Beatson Institute, Garscube Estate, Switchback Road, Glasgow, UK.

出版信息

Cell Rep. 2023 Dec 26;42(12):113554. doi: 10.1016/j.celrep.2023.113554. Epub 2023 Dec 14.

Abstract

Cell invasion is a multi-step process, initiated by the acquisition of a migratory phenotype and the ability to move through complex 3D extracellular environments. We determine the composition of cell-matrix adhesion complexes of invasive breast cancer cells in 3D matrices and identify an interaction complex required for invasive migration. βPix and myosin18A (Myo18A) drive polarized recruitment of non-muscle myosin 2A (NM2A) to adhesion complexes at the tips of protrusions. Actomyosin force engagement then displaces the Git1-βPix complex from paxillin, establishing a feedback loop for adhesion maturation. We observe active force transmission to the nucleus during invasive migration that is needed to pull the nucleus forward. The recruitment of NM2A to adhesions creates a non-muscle myosin isoform gradient, which extends from the protrusion to the nucleus. We postulate that this gradient facilitates coupling of cell-matrix interactions at the protrusive cell front with nuclear movement, enabling effective invasive migration and front-rear cell polarity.

摘要

细胞侵袭是一个多步骤的过程,由获得迁移表型和穿过复杂 3D 细胞外环境的能力启动。我们确定了在 3D 基质中侵袭性乳腺癌细胞与细胞-基质黏附复合物的组成,并鉴定出侵袭性迁移所需的相互作用复合物。βPix 和肌球蛋白 18A(Myo18A)驱动非肌球蛋白 2A(NM2A)向突起尖端黏附复合物的极化募集。肌动球蛋白力的结合然后将 Git1-βPix 复合物从黏着斑置换,从而建立黏附成熟的反馈回路。在侵袭性迁移过程中,我们观察到活跃的力传递到细胞核,这对于将细胞核向前拉动是必需的。NM2A 向黏附物的募集形成了一种非肌球蛋白肌球蛋白同工型梯度,从突起延伸到细胞核。我们推测,这种梯度有助于将细胞-基质相互作用在突起细胞前缘与核运动连接起来,从而实现有效的侵袭性迁移和前后细胞极性。

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