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The RhoGEF DOCK10 is essential for dendritic spine morphogenesis

机译:RhoGEF DOCK10是树突棘形态发生必不可少的

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By regulating actin cytoskeleton dynamics, Rho GTPases and their activators RhoGEFs are implicated in various aspects of neuronal differentiation, including dendritogenesis and synaptogenesis. Purkinje cells (PCs) of the cerebellum, by developing spectacular dendrites covered with spines, represent an attractive model system in which to decipher the molecular signaling underlying these processes. To identify novel regulators of dendritic spine morphogenesis among members of the poorly characterized DOCK family of RhoGEFs, we performed gene expression profiling of fluorescence-activated cell sorting (FACS)-purified murine PCs at various stages of their postnatal differentiation. We found a strong increase in the expression of the Cdc42-specific GEF DOCK10. Depleting DOCK10 in organotypic cerebellar cultures resulted in dramatic dendritic spine defects in PCs. Accordingly, in mouse hippocampal neurons, depletion of DOCK10 or expression of a DOCK10 GEF-dead mutant led to a strong decrease in spine density and size. Conversely, overexpression of DOCK10 led to increased spine formation. We show that DOCK10 function in spinogenesis is mediated mainly by Cdc42 and its downstream effectors N-WASP and PAK3, although DOCK10 is also able to activate Rac1. Our global approach thus identifies an unprecedented function for DOCK10 as a novel regulator of dendritic spine morphogenesis via a Cdc42-mediated pathway.
机译:通过调节肌动蛋白的细胞骨架动力学,Rho GTPases及其激活剂RhoGEF参与神经元分化的各个方面,包括树突形成和突触形成。小脑的浦肯野细胞(PC)通过形成覆盖有棘突的壮观树突,代表了一种有吸引力的模型系统,可在其中破译这些过程的分子信号。为了在RhoGEFs的表征较差的DOCK家族成员中鉴定树突棘形态发生的新型调节剂,我们在其出生后分化的各个阶段进行了荧光激活细胞分选(FACS)纯化的鼠PC的基因表达谱分析。我们发现Cdc42特异性GEF DOCK10的表达大大增加。在器官型小脑培养物中消耗DOCK10会导致PC中严重的树突棘缺陷。因此,在小鼠海马神经元中,DOCK10的耗尽或DOCK10 GEF死亡突变体的表达导致脊柱密度和大小的强烈降低。相反,DOCK10的过表达导致脊柱形成增加。我们显示DOCK10在纺丝发生中的功能主要由Cdc42及其下游效应器N-WASP和PAK3介导,尽管DOCK10也能够激活Rac1。因此,我们的全球方法确定了DOCK10的空前功能,它是通过Cdc42介导的途径作为树突棘形态发生的新型调节剂。

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