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The Arp2/3 complex mediates multigeneration dendritic protrusions for efficient 3-dimensional cancer cell migration

机译:Arp2 / 3复合物介导多代树突状突起以实现有效的3维癌细胞迁移

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摘要

Arp2/3 is a protein complex that nucleates actin filament assembly in the lamellipodium in adherent cells crawling on planar 2-dimensional (2D) substrates. However, in physiopathological situations, cell migration typically occurs within a 3-dimensional (3D) environment, and little is known about the role of Arp2/3 and associated proteins in 3D cell migration. Using time resolved live-cell imaging and HT1080, a fibrosarcoma cell line commonly used to study cell migration, we find that the Arp2/3 complex and associated proteins N-WASP, WAVE1, cortactin, and Cdc42 regulate 3D cell migration. We report that this regulation is caused by formation of multigeneration dendritic protrusions, which mediate traction forces on the surrounding matrix and effective cell migration. The primary protrusions emanating directly from the cell body and prolonging the nucleus forms independent of Arp2/3 and dependent on focal adhesion proteins FAK, talin, and p130Cas. The Arp2/3 complex, N-WASP, WAVE1, cortactin, and Cdc42 regulate the secondary protrusions branching off from the primary protrusions. In 3D matrices, fibrosarcoma cells as well as migrating breast, pancreatic, and prostate cancer cells do not display lamellipodial structures. This study characterizes the unique topology of protrusions made by cells in a 3D matrix and show that these dendritic protrusions play a critical role in 3D cell motility and matrix deformation. The relative contribution of these proteins to 3D migration is significantly different from their role in 2D migration.—Giri, A., Bajpai, S., Trenton, N., Jayatilaka, H., Longmore, G. D., Wirtz, D. The Arp2/3 complex mediates multigeneration dendritic protrusions for efficient 3-dimensional cancer cell migration.
机译:Arp2 / 3是一种蛋白质复合物,可以使在平面二维(2D)基质上爬行的贴壁细胞中的lamellipodium中的肌动蛋白丝装配成核。但是,在生理病理情况下,细胞迁移通常发生在3维(3D)环境中,而关于Arp2 / 3和相关蛋白在3D细胞迁移中的作用知之甚少。使用时间分辨活细胞成像和HT1080(通常用于研究细胞迁移的纤维肉瘤细胞系),我们发现Arp2 / 3复合物和相关蛋白N-WASP,WAVE1,cortactin和Cdc42调节3D细胞迁移。我们报告说,这种调节是由多代树突状突起的形成引起的,该突起可调节周围基质上的牵引力和有效的细胞迁移。直接从细胞体发出并延长细胞核的主要突起独立于Arp2 / 3,并依赖于粘着斑蛋白FAK,塔林和p130Cas。 Arp2 / 3复合物,N-WASP,WAVE1,cortactin和Cdc42调节从初级突起分支出来的次级突起。在3D矩阵中,纤维肉瘤细胞以及正在迁移的乳腺癌,胰腺癌和前列腺癌细胞不显示层状脂质体结构。这项研究描述了3D基质中细胞形成的突起的独特拓扑结构,并表明这些树突状突起在3D细胞运动性和基质变形中起着至关重要的作用。这些蛋白质对3D迁移的相对贡献与其在2D迁移中的作用显着不同。-Giri,A.,Bajpai,S.,Trenton,N.,Jayatilaka,H.,Longmore,GD,Wirtz,D. The Arp2 / 3复合物介导多代树突状突起,以实现有效的3维癌细胞迁移。

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