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首页> 外文期刊>PLoS Computational Biology >Phosphorylation of the Arp2 Subunit Relieves Auto-inhibitory Interactions for Arp2/3 Complex Activation
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Phosphorylation of the Arp2 Subunit Relieves Auto-inhibitory Interactions for Arp2/3 Complex Activation

机译:Arp2亚基的磷酸化可缓解Arp2 / 3复合物激活的自动抑制相互作用。

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摘要

Actin filament assembly by the actin-related protein (Arp) 2/3 complex is necessary to build many cellular structures, including lamellipodia at the leading edge of motile cells and phagocytic cups, and to move endosomes and intracellular pathogens. The crucial role of the Arp2/3 complex in cellular processes requires precise spatiotemporal regulation of its activity. While binding of nucleation-promoting factors (NPFs) has long been considered essential to Arp2/3 complex activity, we recently showed that phosphorylation of the Arp2 subunit is also necessary for Arp2/3 complex activation. Using molecular dynamics simulations and biochemical assays with recombinant Arp2/3 complex, we now show how phosphorylation of Arp2 induces conformational changes permitting activation. The simulations suggest that phosphorylation causes reorientation of Arp2 relative to Arp3 by destabilizing a network of salt-bridge interactions at the interface of the Arp2, Arp3, and ARPC4 subunits. Simulations also suggest a gain-of-function ARPC4 mutant that we show experimentally to have substantial activity in the absence of NPFs. We propose a model in which a network of auto-inhibitory salt-bridge interactions holds the Arp2 subunit in an inactive orientation. These auto-inhibitory interactions are destabilized upon phosphorylation of Arp2, allowing Arp2 to reorient to an activation-competent state.
机译:肌动蛋白相关蛋白(Arp)2/3复合物对肌动蛋白丝的组装对于建立许多细胞结构(包括运动细胞和吞噬杯前端的片状脂膜)以及移动内体和细胞内病原体是必需的。 Arp2 / 3复合物在细胞过程中的关键作用需要对其活动进行精确的时空调节。虽然长期以来一直认为成核促进因子(NPFs)的结合对于Arp2 / 3复合物的活性至关重要,但我们最近发现,Arp2 / 3复合物的活化也需要Arp2亚基的磷酸化。使用分子动力学模拟和重组Arp2 / 3复合物的生化测定,我们现在显示Arp2的磷酸化如何诱导构象变化以激活。模拟表明,磷酸化通过使Arp2,Arp3和ARPC4亚基界面处的盐桥相互作用网络不稳定而引起Arp2相对于Arp3的重新定向。模拟还表明功能获得的ARPC4突变体,我们在实验中显示在没有NPF的情况下具有实质活性。我们提出了一个模型,其中自动抑制盐桥相互作用的网络将Arp2亚基保持在非活动方向。这些自动抑制相互作用在Arp2磷酸化后不稳定,从而使Arp2可以重新定向到激活状态。

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