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细胞中 Arp2/3 复合物激活的分子分析。

Molecular analysis of Arp2/3 complex activation in cells.

机构信息

Department of Cell Biology and Physiology, Washington University, Saint Louis, MO, USA.

出版信息

Biophys J. 2012 Nov 21;103(10):2145-56. doi: 10.1016/j.bpj.2012.10.009. Epub 2012 Nov 20.

Abstract

Many forms of cellular motility are driven by the growth of branched networks of actin filaments, which push against a membrane. In the dendritic nucleation model, Arp2/3 complex is critical, binding to the side of an existing mother filament, nucleating a new daughter filament, and thus creating a branch. Spatial and temporal regulation of Arp2/3 activity is critical for efficient generation of force and movement. A diverse collection of Arp2/3 regulatory proteins has been identified. They bind to and/or activate Arp2/3 complex via an acidic motif with a conserved tryptophan residue. We tested this model for Arp2/3 regulator function in vivo, by examining the roles of multiple Arp2/3 regulators in endocytosis in living yeast cells. We measured the molecular composition of the actin network in cells with mutations that removed the acidic motifs of the four Arp2/3 regulators previously shown to influence the proper function of the actin network. Unexpectedly, we did not find a simple or direct correlation between defects in patch assembly and movement and changes in the composition and dynamics of dendritic nucleation proteins. Taken together our data does not support the simple hypothesis that the primary role for Arp2/3 regulators is to recruit and activate Arp2/3. Rather our data suggests that these regulators may be playing more subtle roles in establishing functional networks in vivo.

摘要

许多形式的细胞运动都是由分支的肌动蛋白丝网络的生长驱动的,这些网络推动细胞膜。在树突核成模型中,Arp2/3 复合物是关键的,它结合在现有母丝的侧面,核化一个新的子丝,从而形成一个分支。Arp2/3 活性的时空调节对于有效产生力和运动至关重要。已经鉴定出多种 Arp2/3 调节蛋白。它们通过具有保守色氨酸残基的酸性基序结合到 Arp2/3 复合物上或激活 Arp2/3 复合物。我们通过在活酵母细胞中检查多个 Arp2/3 调节剂在胞吞作用中的作用,在体内测试了该模型的 Arp2/3 调节剂功能。我们测量了在四个之前显示影响肌动蛋白网络正常功能的 Arp2/3 调节剂的酸性基序缺失的突变细胞中肌动蛋白网络的分子组成。出乎意料的是,我们没有发现斑块组装和运动的缺陷与树突核成蛋白的组成和动力学变化之间存在简单或直接的相关性。总的来说,我们的数据不支持 Arp2/3 调节剂的主要作用是招募和激活 Arp2/3 的简单假设。相反,我们的数据表明,这些调节剂在建立体内功能性网络方面可能发挥着更微妙的作用。

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