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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Tech: a RhoA GEF selectively expressed in hippocampal and cortical neurons.
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Tech: a RhoA GEF selectively expressed in hippocampal and cortical neurons.

机译:技术:RhoA GEF在海马和皮层神经元中选择性表达。

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Recent studies implicating the Rho family of small G proteins in the regulation of neuronal morphology have focused attention on identifying key components of Rho signaling pathways in neurons. To this end, we have conducted studies aimed at defining the localization and function of Tech, a Rho guanine nucleotide exchange factor (GEF) family member that is highly enriched in brain. We have found that Tech is selectively expressed in cortical and hippocampal neurons with prominent Tech immunostaining apparent in the cell bodies and dendrites of these cells. In vitro studies with prototypical members of the major Rho subfamilies, RhoA, Rac1 and Cdc42, indicate that Tech binds selectively to and activates RhoA. To assess whether Tech may be involved in the regulation of neuronal morphology, we examined the effects of Tech constructs on the morphology of cortical neurons grown in primary culture. We found that a constitutively active Tech construct, Tech 245DeltaC, decreases the number of dendritic processes present on these neurons. This reduction appears to be mediated by activation of RhoA as it is blocked by insertion of a point mutation into the DH domain of Tech which blocks its ability to activate RhoA or coexpression of a dominant negative RhoA construct. As Tech protein levels increase during post-natal development and remain at peak levels into adulthood, these results indicate that Tech regulates RhoA signaling pathways in developing and mature forebrain neurons.
机译:涉及小G蛋白Rho家族调控神经元形态的最新研究集中于确定神经元Rho信号通路的关键成分。为此,我们进行了旨在定义Tech的定位和功能的研究,Tech是高度富含大脑的Rho鸟嘌呤核苷酸交换因子(GEF)家族成员。我们已经发现Tech在皮层和海马神经元中选择性表达,并且在这些细胞的细胞体和树突中有明显的Tech免疫染色。对主要Rho亚家族的原型成员RhoA,Rac1和Cdc42的体外研究表明,Tech选择性结合并激活RhoA。为了评估Tech是否可能参与神经元形态的调控,我们研究了Tech构建体对原代培养中生长的皮质神经元形态的影响。我们发现,构成活性的Tech构造Tech 245DeltaC减少了这些神经元上存在的树突状过程的数量。这种减少似乎是由RhoA的激活介导的,因为它通过将点突变插入Tech的DH域而被阻断,这阻止了它激活RhoA或共表达负性RhoA构建体的能力。随着Tech蛋白质水平在出生后发育过程中增加并一直保持到成年期的最高水平,这些结果表明Tech调节发育中和成熟的前脑神经元中的RhoA信号传导途径。

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