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首页> 外文期刊>Current Biology: CB >Interactions of ADF/cofilin, Arp2/3 complex, capping protein and profilin in remodeling of branched actin filament networks
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Interactions of ADF/cofilin, Arp2/3 complex, capping protein and profilin in remodeling of branched actin filament networks

机译:ADF / cofilin,Arp2 / 3复合物,加帽蛋白和profilin在分支肌动蛋白丝网络重构中的相互作用

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摘要

Background: Cellular movements are powered by the assembly and disassembly of actin filaments. Actin dynamics are controlled by Arp2/3 complex, the Wiskott-Aldrich syndrome protein (WASp) and the related Scar protein, capping protein, profilin, and the actin-depolymerizing factor (ADF, also known as cofilin). Recently, using an assay that both reveals the kinetics of overall reactions and allows visualization of actin filaments, we showed how these proteins co-operate in the assembly of branched actin filament networks. Here, we investigated how they work together to disassemble the networks, Results: Actin filament branches formed by polymerization of ATP-actin in the presence of activated Arp2/3 complex were found to be metastable, dissociating from the mother filament with a half time of 500 seconds, The ADF/cofilin protein actophorin reduced the half time for both dissociation of gamma -phosphate from ADP-P-i-actin filaments and debranching to 30 seconds. Branches were stabilized by phalloidin, which inhibits phosphate dissociation from ADP-P-i-filaments, and by BeF3, which forms a stable complex with ADP and actin. Arp2/3 complex capped pointed ends of ATP-actin filaments with higher affinity (K-d similar to 40 nM) than those of ADP-actin filaments (K-d similar to1 muM), explaining why phosphate dissociation from ADP-P-i-filaments liberates branches. Capping protein prevented annealing of short filaments after debranching and, with profilin, allowed filaments to depolymerize at the pointed ends. Conclusions: The low affinity of Arp2/3 complex for the pointed ends of ADP-actin makes actin filament branches transient. By accelerating phosphate dissociation, ADF/cofilin promotes debranching. Barbed-end capping proteins and profilin allow dissociated branches to depolymerize from their free pointed ends. [References: 43]
机译:背景:肌动蛋白丝的组装和拆卸为细胞的运动提供动力。肌动蛋白动力学受Arp2 / 3复合物,维斯科特-奥尔德里奇综合症蛋白(WASp)以及相关的疤痕蛋白,加帽蛋白,脯氨酸蛋白和肌动蛋白解聚因子(ADF,也称为cofilin)控制。最近,使用一种既可以揭示整体反应动力学又可以可视化肌动蛋白丝的分析方法,我们展示了这些蛋白质如何在支链肌动蛋白丝网络的组装中协同工作。在这里,我们研究了它们如何协同工作以分解网络,结果:发现在活化的Arp2 / 3复合物存在下,由ATP-肌动蛋白聚合形成的肌动蛋白丝分支是亚稳态的,与母丝解离的时间为一半。 500秒后,ADF / cofilin蛋白Actophorin缩短了从ADP-Pi-actin细丝解离γ-磷酸和脱支至30秒的半场时间。鬼笔环肽可抑制分支从ADP-P-i丝中解离,而BeF3可与ADP和肌动蛋白形成稳定的复合物,从而稳定分支。 ATP-肌动蛋白丝的Arp2 / 3复合物封端的末端具有比ADP-肌动蛋白丝(K-d接近1μM)更高的亲和力(K-d类似于40 nM),从而解释了为什么磷酸盐从ADP-P-i丝解离而释放出分支。封端蛋白可防止短的细丝在脱支后退火,并与脯氨酸蛋白一起使细丝在尖端解聚。结论:Arp2 / 3复合物对ADP-肌动蛋白尖端的低亲和力使肌动蛋白丝分支瞬变。通过促进磷酸盐解离,ADF / cofilin促进了脱支。带刺的末端封端蛋白和蛋白水解酶可以使解离的分支从其自由的末端解聚。 [参考:43]

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