应力纤维
纤维
成核
细胞生物学
肌动蛋白
材料科学
压力(语言学)
生物物理学
复合材料
化学
焦点粘着
生物
信号转导
语言学
哲学
有机化学
作者
Donovan Y.Z. Phua,Xiaoyu Sun,Gregory M. Alushin
标识
DOI:10.1101/2024.05.17.594765
摘要
SUMMARY As the cytoskeleton sustains cell and tissue forces, it incurs physical damage that must be repaired to maintain mechanical homeostasis. The LIM-domain protein zyxin detects force-induced ruptures in actin-myosin stress fibers, coordinating downstream repair factors to restore stress fiber integrity through unclear mechanisms. Here, we reconstitute stress fiber repair with purified proteins, uncovering detailed links between zyxin’s force-regulated binding interactions and cytoskeletal dynamics. In addition to binding individual tensed actin filaments (F-actin), zyxin’s LIM domains form force-dependent assemblies that bridge broken filament fragments. Zyxin assemblies engage repair factors through multi-valent interactions, coordinating nucleation of new F-actin by VASP and its crosslinking into aligned bundles by ɑ-actinin. Through these combined activities, stress fiber repair initiates within the cores of micron-scale damage sites in cells, explaining how these F-actin depleted regions are rapidly restored. Thus, zyxin’s force-dependent organization of actin repair machinery inherently operates at the network scale to maintain cytoskeletal integrity.
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