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波状肌动蛋白在片状伪足中的一种新功能:在细胞铺展过程中,波状肌动蛋白1是片状伪足突起稳定所必需的。

A novel function of WAVE in lamellipodia: WAVE1 is required for stabilization of lamellipodial protrusions during cell spreading.

作者信息

Yamazaki Daisuke, Fujiwara Takashi, Suetsugu Shiro, Takenawa Tadaomi

机构信息

Department of Biochemistry, Institute of Medical Science, University of Tokyo, Tokyo, Japan.

出版信息

Genes Cells. 2005 May;10(5):381-92. doi: 10.1111/j.1365-2443.2005.00845.x.

Abstract

When a cell spreads and moves, reorganization of the actin cytoskeleton pushes the cell membrane, and the resulting membrane protrusions create new points of contact with the substrate and generate the locomotive force. Membrane extension and adhesion to a substrate must be tightly coordinated for effective cell movement, but little is known about the mechanisms underlying these processes. WAVEs are critical regulators of Rac-induced actin reorganization. WAVE2 is essential for formation of lamellipodial structures at the cell periphery stimulated by growth factors, but it is thought that WAVE1 is dispensable for such processes in mouse embryonic fibroblasts (MEFs). Here we show a novel function of WAVE in lamellipodial protrusions during cell spreading. During spreading on fibronectin (FN), MEFs with knockouts (KOs) of WAVE1 and WAVE2 showed different membrane dynamics, suggesting that these molecules have distinct roles in lamellipodium formation. Formation of lamellipodial structures on FN was inhibited in WAVE2 KO MEFs. In contrast, WAVE1 is not essential for extension of lamellipodial protrusions but is required for stabilization of such structures. WAVE1-deficiency decreased the density of actin filaments and increased the speed of membrane extension, causing deformation of focal complex at the tip of spreading edges. Thus, at the tip of the lamellipodial protrusion, WAVE2 generates the membrane protrusive structures containing actin filaments, and modification by WAVE1 stabilizes these structures through cell-substrate adhesion. Coordination of WAVE1 and WAVE2 activities appears to be necessary for formation of proper actin structures in stable lamellipodia.

摘要

当细胞铺展并移动时,肌动蛋白细胞骨架的重组推动细胞膜,由此产生的膜突出物与底物形成新的接触点并产生运动力。膜的延伸和与底物的粘附必须紧密协调才能实现有效的细胞运动,但对于这些过程背后的机制知之甚少。WAVE是Rac诱导的肌动蛋白重组的关键调节因子。WAVE2对于生长因子刺激下细胞周边片状伪足结构的形成至关重要,但人们认为WAVE1在小鼠胚胎成纤维细胞(MEF)的此类过程中是可有可无的。在这里,我们展示了WAVE在细胞铺展过程中片状伪足突出物中的新功能。在纤连蛋白(FN)上铺展时,WAVE1和WAVE2基因敲除(KO)的MEF表现出不同的膜动力学,这表明这些分子在片状伪足形成中具有不同的作用。WAVE2基因敲除的MEF中,FN上片状伪足结构的形成受到抑制。相反,WAVE1对于片状伪足突出物的延伸不是必需的,但对于此类结构的稳定是必需的。WAVE1缺陷降低了肌动蛋白丝的密度并提高了膜延伸的速度,导致铺展边缘尖端的粘着斑复合体变形。因此,在片状伪足突出物的尖端,WAVE2产生包含肌动蛋白丝的膜突出结构,而WAVE1的修饰通过细胞-底物粘附稳定这些结构。WAVE1和WAVE2活性的协调似乎对于稳定片状伪足中适当的肌动蛋白结构的形成是必要的。

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