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首页> 外文期刊>The Journal of biological chemistry >The scaffold-protein IQGAP1 enhances and spatially restricts the actin-nucleating activity of Diaphanous-related formin 1 (DIAPH1)
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The scaffold-protein IQGAP1 enhances and spatially restricts the actin-nucleating activity of Diaphanous-related formin 1 (DIAPH1)

机译:支架蛋白Iqgap1增强并在空间上限制了肌动蛋白相关的甲状腺蛋白1的活性(Diaph1)

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摘要

The actin cytoskeleton is a dynamic array of filaments that undergoes rapid remodeling to drive many cellular processes. An essential feature of filament remodeling is the spatio-temporal regulation of actin filament nucleation. One family of actin filament nucleators, the Diaphanous-related formins, is activated by the binding of small G-proteins such as RhoA. However, RhoA only partially activates formins, suggesting that additional factors are required to fully activate the formin. Here we identify one such factor, IQ motif containing GTPase activating protein-1 (IQGAP1), which enhances RhoA-mediated activation of the Diaphanous-related formin (DIAPH1) and targets DIAPH1 to the plasma membrane. We find that the inhibitory intramolecular interaction within DIAPH1 is disrupted by the sequential binding of RhoA and IQGAP1. Binding of RhoA and IQGAP1 robustly stimulates DIAPH1-mediated actin filament nucleation in vitro. In contrast, the actin capping protein Flightless-I, in conjunction with RhoA, only weakly stimulates DIAPH1 activity. IQGAP1, but not Flightless-I, is required to recruit DIAPH1 to the plasma membrane where actin filaments are generated. These results indicate that IQGAP1 enhances RhoA-mediated activation of DIAPH1 in vivo. Collectively these data support a model where the combined action of RhoA and an enhancer ensures the spatio-temporal regulation of actin nucleation to stimulate robust and localized actin filament production in vivo.
机译:肌动蛋白细胞骨架是一种动态的长丝阵列,经历快速重塑以驱动许多细胞过程。丝状重塑的基本特征是肌动蛋白长丝成核的时空调节。一系列肌动蛋白长丝核核酸核糖剂,透明型结合物,通过诸如RHOA的小G-蛋白的结合而激活。然而,RHOA仅部分激活甲虫,表明需要额外的因素来完全激活素质。在这里,我们鉴定了含有GTP酶活性蛋白-1(IQGAP1)的一种这种因素IQ族序列,其增强了RHOA介导的透析相关甲素(DIOPH1)的激活并靶向垂直于血浆膜。我们发现,DiaPH1内的抑制分子内相互作用被RhOA和IQGAP1的顺序结合破坏。 RhOA和IQGAP1的结合强大地刺激了体外肌肌肌肽长丝成核的DiaPH1介导的肌动蛋白长丝成核。相比之下,肌动蛋白封膜蛋白无缝-i,与RhOA结合,只能弱刺激DIAPH1活性。 IQGAP1,但不是飞行-I,需要招募DiaPh1到产生肌动蛋白细丝的质膜。这些结果表明,IQGAP1增强了体内瘤的ROOA介导的激活。总的来说这些数据支持RhOA和增强剂的组合作用确保肌动蛋白成核的时空调节刺激体内肌肉诱发且局部的肌动蛋白长丝产生。

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