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MAP4K4 通过调节细胞-细胞和细胞-基质黏附处的力来促进细胞的集体迁移。

MAP4K4 regulates forces at cell-cell and cell-matrix adhesions to promote collective cell migration.

机构信息

Vesicular Trafficking and Cell Signalling Research Unit, Institute for Research in Immunology and Cancer https://ror.org/0161xgx34 (IRIC), Université de Montréal, Montréal, Canada.

Department of Bioengineering, McGill University, Montreal, Canada.

出版信息

Life Sci Alliance. 2023 Jun 27;6(9). doi: 10.26508/lsa.202302196. Print 2023 Sep.

Abstract

Collective cell migration is not only important for development and tissue homeostasis but can also promote cancer metastasis. To migrate collectively, cells need to coordinate cellular extensions and retractions, adhesion sites dynamics, and forces generation and transmission. Nevertheless, the regulatory mechanisms coordinating these processes remain elusive. Using A431 carcinoma cells, we identify the kinase MAP4K4 as a central regulator of collective migration. We show that MAP4K4 inactivation blocks the migration of clusters, whereas its overexpression decreases cluster cohesion. MAP4K4 regulates protrusion and retraction dynamics, remodels the actomyosin cytoskeleton, and controls the stability of both cell-cell and cell-substrate adhesion. MAP4K4 promotes focal adhesion disassembly through the phosphorylation of the actin and plasma membrane crosslinker moesin but disassembles adherens junctions through a moesin-independent mechanism. By analyzing traction and intercellular forces, we found that MAP4K4 loss of function leads to a tensional disequilibrium throughout the cell cluster, increasing the traction forces and the tension loading at the cell-cell adhesions. Together, our results indicate that MAP4K4 activity is a key regulator of biomechanical forces at adhesion sites, promoting collective migration.

摘要

细胞集体迁移不仅对发育和组织稳态很重要,而且还能促进癌症转移。为了进行集体迁移,细胞需要协调细胞的延伸和收缩、黏附位点动力学以及力的产生和传递。然而,协调这些过程的调节机制仍然难以捉摸。我们使用 A431 癌细胞,鉴定出激酶 MAP4K4 是细胞集体迁移的核心调节因子。我们表明,MAP4K4 的失活会阻止细胞簇的迁移,而其过表达会降低细胞簇的黏附性。MAP4K4 调节突起和回缩动力学,重塑肌动球蛋白细胞骨架,并控制细胞-细胞和细胞-基质黏附的稳定性。MAP4K4 通过磷酸化肌动蛋白和质膜交联蛋白 moesin 促进黏着斑解聚,但通过 moesin 非依赖性机制解聚黏着连接。通过分析牵引力和细胞间力,我们发现 MAP4K4 功能丧失会导致整个细胞簇中的张力失衡,增加细胞-细胞黏附处的牵引力和张力负荷。总之,我们的研究结果表明,MAP4K4 的活性是黏附位点生物力学力的关键调节因子,促进了细胞集体迁移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f749/10300198/e8fe8d6c945d/LSA-2023-02196_GA.jpg

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