首页> 外文期刊>Neuroreport >Phosphorylation of CYFIP2, a component of the WAVE-regulatory complex, regulates dendritic spine density and neurite outgrowth in cultured hippocampal neurons potentially by affecting the complex assembly
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Phosphorylation of CYFIP2, a component of the WAVE-regulatory complex, regulates dendritic spine density and neurite outgrowth in cultured hippocampal neurons potentially by affecting the complex assembly

机译:Cyfip2,波浪调节综合体的组分,通过影响复杂组件来调节培养的海马神经元的树突脊柱密度和神经突缺血

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摘要

Actin dynamics is a critical mechanism underlying many cellular processes in neurons. The heteropentameric WAVE-regulatory complex (WRC), consisting of WAVE, CYFIP1/2, Nap, Abi, and HSPC300, is a key regulator of actin dynamics that activates the Arp2/3 complex to initiate actin polymerization and branching. The WRC is basally inactive because of intermolecular interactions among the components, which can be modulated by bindings of phospholipids and Rac1, and phosphorylations of WAVE and Abi. However, the phosphorylation of other components of WRC and their functional significance remain largely unknown. To address this issue, we focused on CYFIP1/2, in which we found two brain-specific phosphorylation sites (S582 of CYFIP2 and T1068/T1067 of CYFIP1/2) from a publicly available phosphoproteome database. To understand their functional effects, we overexpressed wild-type, phospho-blocking, or phospho-mimetic mutants of CYFIP2 in cultured hippocampal neurons, and found that only T1067A CYFIP2 decreased the density of stubby spines. Moreover, overexpression of wild-type CYFIP2 increased neurite length, but T1067A did not exert this effect. To understand the mechanism, we modeled CYFIP2 phosphorylation in the crystal structure of WRC and found that T1067 phosphorylation could weaken the interaction between CYFIP2 and Nap1 by inducing conformational changes of CYFIP2 -helical bundles. In the co-immunoprecipitation assay, however, wild-type, T1067A, and T1067E CYFIP2 showed similar interaction levels to Nap1, suggesting that T1067 phosphorylation alone is not sufficient to disrupt the interaction. Considering that the activation of WRC requires disassembly of the complex, our results suggest that T1067 phosphorylation, together with other factors, could contribute toward the activation process.
机译:Actin Dynamics是神经元中许多细胞过程的关键机制。由波,CYFIP1 / 2,NAP,ABI和HSPC300组成的异源大胺波调节络合物(WRC)是肌动蛋白动态的关键调节器,其激活ARP2 / 3复合物以引发肌动蛋白聚合和支化。由于组分之间的分子间相互作用,WRC基本不活跃,其可以通过磷脂和RAC1的结合来调节,以及波和ABI的磷酸化。然而,WRC的其他组分及其功能意义的磷酸化仍然很大程度上是未知的。为了解决这个问题,我们专注于CYFIP1 / 2,其中我们发现了来自公共磷酸磷糖核桃组数据库的两个脑特异性磷酸化位点(CYFIP2和CYFIP1 / 2的T1068 / T1067的S582)。为了了解其功能效果,我们过表达培养的海马神经元的过表达野生型,磷酸盐或磷酸突变体,并发现仅T1067a Cyfip2降低了螺纹刺的密度。此外,野生型CYFIP2的过表达增加了神经突长度,但T1067A没有发挥这种效果。为了了解该机制,我们在WRC的晶体结构中建模了Cyfip2磷酸化,发现T1067磷酸化可以通过诱导Cyfip2 - elical束的构象变化来削弱Cyfip2和NAP1之间的相互作用。然而,在共免疫沉淀测定中,野生型,T1067A和T1067E CYFIP2显示出与NAP1类似的相互作用水平,表明T1067单独的磷酸化不足以破坏相互作用。考虑到WRC的激活需要拆卸复杂,我们的结果表明T1067磷酸化以及其他因素可以促进激活过程。

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