Université Grenoble-Alpes, CEA, CNRS, INRA, Interdisciplinary Research Institute of Grenoble, Laboratoire de Physiologie Cellulaire & Végétale, CytoMorphoLab, 3800, Grenoble, France.
Université Grenoble-Alpes, CEA, INRA, CNRS, UMR5168, Interdisciplinary Research Institute of Grenoble, Biomics Lab, 38000 Grenoble, France.
J Cell Sci. 2019 Nov 14;132(22):jcs236604. doi: 10.1242/jcs.236604.
Cell and tissue morphogenesis depend on the production and spatial organization of tensional forces in the actin cytoskeleton. Actin network architecture is made of distinct modules characterized by specific filament organizations. The assembly of these modules are well described, but their integration in a cellular network is less understood. Here, we investigated the mechanism regulating the interplay between network architecture and the geometry of the extracellular environment of the cell. We found that α-actinin, a filament crosslinker, is essential for network symmetry to be consistent with extracellular microenvironment symmetry. It is required for the interconnection of transverse arcs with radial fibres to ensure an appropriate balance between forces at cell adhesions and across the actin network. Furthermore, this connectivity appeared necessary for the ability of the cell to integrate and to adapt to complex patterns of extracellular cues as they migrate. Our study has unveiled a role of actin filament crosslinking in the spatial integration of mechanical forces that ensures the adaptation of intracellular symmetry axes in accordance with the geometry of extracellular cues.This article has an associated First Person interview with the first author of the paper.
细胞和组织形态发生依赖于肌动蛋白细胞骨架中张力的产生和空间组织。肌动蛋白网络结构由具有特定丝组织结构的不同模块组成。这些模块的组装已经得到了很好的描述,但它们在细胞网络中的整合还不太清楚。在这里,我们研究了调节网络结构与细胞外环境几何形状相互作用的机制。我们发现,细丝交联蛋白α-辅肌动蛋白对于保持网络对称性与细胞外微环境对称性一致是必不可少的。它连接横向弧与放射状纤维,以确保细胞黏附处和肌动蛋白网络上的力之间达到适当的平衡。此外,这种连通性似乎对于细胞整合和适应复杂的细胞外信号模式的能力是必需的,因为细胞在迁移过程中需要适应这些模式。我们的研究揭示了肌动蛋白丝交联在机械力空间整合中的作用,确保了细胞内对称轴根据细胞外信号的几何形状进行适应性调整。本文有一篇与该论文第一作者的第一人称访谈。