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首页> 外文期刊>PLoS Biology >Activation of Arp2/3 Complex: Addition of the First Subunit of the New Filament by a WASP Protein Triggers Rapid ATP Hydrolysis on Arp2
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Activation of Arp2/3 Complex: Addition of the First Subunit of the New Filament by a WASP Protein Triggers Rapid ATP Hydrolysis on Arp2

机译:ARP2 / 3复合物的激活:通过黄蜂蛋白触发新丝的第一个亚基触发ARP2上的快速ATP水解

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In response to activation by WASP-family proteins, the Arp2/3 complex nucleates new actin filaments from the sides of preexisting filaments. The Arp2/3-activating (VCA) region of WASP-family proteins binds both the Arp2/3 complex and an actin monomer and the Arp2 and Arp3 subunits of the Arp2/3 complex bind ATP. We show that Arp2 hydrolyzes ATP rapidly—with no detectable lag—upon nucleation of a new actin filament. Filamentous actin and VCA together do not stimulate ATP hydrolysis on the Arp2/3 complex, nor do monomeric and filamentous actin in the absence of VCA. Actin monomers bound to the marine macrolide Latrunculin B do not polymerize, but in the presence of phalloidin-stabilized actin filaments and VCA, they stimulate rapid ATP hydrolysis on Arp2. These data suggest that ATP hydrolysis on the Arp2/3 complex is stimulated by interaction with a single actin monomer and that the interaction is coordinated by VCA. We show that capping of filament pointed ends by the Arp2/3 complex (which occurs even in the absence of VCA) also stimulates rapid ATP hydrolysis on Arp2, identifying the actin monomer that stimulates ATP hydrolysis as the first monomer at the pointed end of the daughter filament. We conclude that WASP-family VCA domains activate the Arp2/3 complex by driving its interaction with a single conventional actin monomer to form an Arp2–Arp3–actin nucleus. This actin monomer becomes the first monomer of the new daughter filament.
机译:响应于黄蜂家族蛋白的活化,ARP2 / 3复合核从预先存在的长丝侧面核心新的肌动蛋白长丝。 WASP系列蛋白的ARP2 / 3激活(VCA)区域结合ARP2 / 3复合物和ACTIN单体和ARP2 / 3复合物的ARP2和ARP3亚基结合ATP。我们展示ARP2迅速水解ATP - 没有可检测的滞后 - 在新的肌动蛋白长丝的成核中。丝状肌动蛋白和VCA在没有VCA的情况下,在ARP2 / 3复合物上没有刺激ATP水解,也不是单体和丝状肌动蛋白。肌动蛋白单体与海洋大环内酯Latrundulin B不聚合,但在阴辐素稳定的肌动蛋白细丝和VCA存在下,它们刺激ARP2上的快速ATP水解。这些数据表明,通过与单个肌动蛋白单体的相互作用刺激ATP水解对ARP2 / 3复合物的刺激,并且通过VCA协调相互作用。我们表明,灯丝尖端的凸起通过ARP2 / 3复合物(即使在没有VCA的情况下发生)也刺激ARP2上的快速ATP水解,鉴定致动蛋白单体,其刺激ATP水解作为第一单体的尖端女儿灯丝。我们得出结论,WASP家族VCA结构域通过驱动其与单一常规肌动蛋白单体的相互作用来激活ARP2 / 3复合物,以形成ARP2-ARP3-肌动蛋白核。这种肌动蛋白单体成为新女儿长丝的第一单体。

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