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细胞间黏附分子 E-钙黏蛋白依赖性 EGFR 磷酸化调控细胞集体迁移过程中的细胞间黏度。

Regulation of intercellular viscosity by E-cadherin-dependent phosphorylation of EGFR in collective cell migration.

机构信息

Mechanobiology Institute, National University of Singapore, Singapore 117411, Singapore.

Aix Marseille Univ, Université de Toulon, CNRS, Centre de Physique Theorique (UMR 7332), Turing Centre for Living systems, Marseille 13009, France.

出版信息

Proc Natl Acad Sci U S A. 2024 Sep 10;121(37):e2405560121. doi: 10.1073/pnas.2405560121. Epub 2024 Sep 4.

Abstract

Collective cell migration is crucial in various physiological processes, including wound healing, morphogenesis, and cancer metastasis. Adherens Junctions (AJs) play a pivotal role in regulating cell cohesion and migration dynamics during tissue remodeling. While the role and origin of the junctional mechanical tension at AJs have been extensively studied, the influence of the actin cortex structure and dynamics on junction plasticity remains incompletely understood. Moreover, the mechanisms underlying stress dissipation at junctions are not well elucidated. Here, we found that the ligand-independent phosphorylation of epithelial growth factor receptor (EGFR) downstream of de novo E-cadherin adhesion orchestrates a feedback loop, governing intercellular viscosity via the Rac pathway regulating actin dynamics. Our findings highlight how the E-cadherin-dependent EGFR activity controls the migration mode of collective cell movements independently of intercellular tension. This modulation of effective viscosity coordinates cellular movements within the expanding monolayer, inducing a transition from swirling to laminar flow patterns while maintaining a constant migration front speed. Additionally, we propose a vertex model with adjustable junctional viscosity, capable of replicating all observed cellular flow phenotypes experimentally.

摘要

细胞集体迁移在多种生理过程中至关重要,包括伤口愈合、形态发生和癌症转移。黏着连接(AJs)在组织重塑过程中调节细胞内聚力和迁移动力学方面起着关键作用。尽管 AJs 处的连接力学张力的作用和起源已经得到广泛研究,但 actin 皮质结构和动力学对连接可塑性的影响仍不完全清楚。此外,连接处的应力耗散机制也没有很好地阐明。在这里,我们发现上皮生长因子受体(EGFR)的配体非依赖性磷酸化在新形成的 E-钙黏蛋白黏附的下游协调了一个反馈回路,通过 Rac 通路调节 actin 动力学来控制细胞间黏度。我们的发现强调了 E-钙黏蛋白依赖性 EGFR 活性如何独立于细胞间张力控制集体细胞运动的迁移模式。这种有效黏度的调节协调了扩展单层内的细胞运动,在保持恒定迁移前沿速度的同时,诱导从漩涡到层流模式的转变。此外,我们提出了一个具有可调节连接黏度的顶点模型,能够复制所有观察到的细胞流动表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e180/11406304/21ed687c7aef/pnas.2405560121fig01.jpg

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