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αPIX 是海马神经元轴突和树突分支的特异性调节因子,本研究对其进行了生化和功能表征。

Biochemical and functional characterisation of αPIX, a specific regulator of axonal and dendritic branching in hippocampal neurons.

机构信息

Cell Adhesion Unit, San Raffaele Scientific Institute, Milano, Italy.

出版信息

Biol Cell. 2012 Sep;104(9):533-52. doi: 10.1111/boc.201100060. Epub 2012 Jun 22.

Abstract

BACKGROUND INFORMATION

PIX proteins are exchange factors for Rac and Cdc42 GTPases that are differentially expressed in the brain, where they are implicated in neuronal morphogenesis. The PIX family includes the two members αPIX and βPIX, and the gene of αPIX is mutated in patients with intellectual disability.

RESULTS

We have analysed the expression of PIX proteins in the developing brain and addressed their role during early hippocampal neuron development. Mass spectrometry identified several βPIX isoforms and a major p75 αPIX isoform in brain and hippocampal cultures. PIX proteins expression increased with time during neuronal differentiation in vitro. The PIX partners GIT1 and GIT2 are also found in brain and their expression was increased during neuronal differentiation. We found that αPIX, but not βPIX, was required for proper hippocampal neuron differentiation, since silencing of αPIX specifically hampered dendritogenesis and axonal branching. Interestingly, the depletion of GIT2 but not GIT1 mimicked the phenotype observed after αPIX knock-down. Over-expression of αPIX specifically enhanced dendritic branching, while both αPIX and βPIX over-expression affected axonal morphology. Again, only over-expression of GIT2, but not GIT1, affected neuritic morphology.

CONCLUSIONS

The results indicate that αPIX and GIT2 are required for neuronal differentiation, and suggest that they are part of the same pathway, while GIT1 and βPIX are dispensable for early hippocampal neurons development.

摘要

背景信息

PIX 蛋白是 Rac 和 Cdc42 GTP 酶的交换因子,在大脑中表达不同,它们与神经元形态发生有关。PIX 家族包括两个成员 αPIX 和 βPIX,αPIX 的基因在智力障碍患者中发生突变。

结果

我们分析了 PIX 蛋白在发育中的大脑中的表达,并研究了它们在早期海马神经元发育过程中的作用。质谱鉴定了大脑和海马培养物中的几种βPIX 异构体和主要的 p75αPIX 异构体。在体外神经元分化过程中,PIX 蛋白的表达随时间增加。PIX 的伴侣 GIT1 和 GIT2 也存在于大脑中,它们的表达在神经元分化过程中增加。我们发现,αPIX(而不是βPIX)是海马神经元分化所必需的,因为 αPIX 的沉默特异性地阻碍了树突发生和轴突分支。有趣的是,GIT2 的耗竭而不是 GIT1 的耗竭模拟了αPIX 敲低后观察到的表型。αPIX 的过表达特异性增强了树突分支,而 αPIX 和βPIX 的过表达都影响了轴突形态。同样,只有 GIT2 的过表达,而不是 GIT1 的过表达,影响了神经突形态。

结论

这些结果表明,αPIX 和 GIT2 是神经元分化所必需的,并表明它们是同一途径的一部分,而 GIT1 和βPIX 对于早期海马神经元的发育是可有可无的。

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