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IQGAP1 在小鼠海马体兴奋性损伤后 CA1 神经元存活中的表达。

IQGAP1 expression in spared CA1 neurons after an excitotoxic lesion in the mouse hippocampus.

机构信息

Department of Anatomy, Brain Research Institute, Chungnam National University School of Medicine, Daejeon, 301-747, South Korea.

出版信息

Cell Mol Neurobiol. 2013 Oct;33(7):1003-12. doi: 10.1007/s10571-013-9968-x. Epub 2013 Aug 2.

Abstract

Repeated seizures induce permanent alterations in the hippocampal circuits in experimental models with intractable temporal lobe epilepsy. Sprouting and synaptic reorganization induced by seizures has been well-studied in the mossy fiber pathway. However, studies investigating sprouting and synaptic reorganization beyond the mossy fiber pathway are limited. The present study examined the biochemical changes of CA1 pyramidal neurons undergoing morphological changes after excitotoxicity-induced hippocampal CA3 neuronal death. IQ-domain GTPase-activating proteins (IQGAP1), is an effector of Rac1 and Cdc42 and an actin-binding protein, was upregulated in CA1 pyramidal neurons after kainic acid-induced hippocampal CA3 neuronal degeneration. IQGAP1 + cells were colocalized with Nestin, but not in astrocytes or mature neurons. Furthermore, IQGAP1 did not originate from newly divided local precursors or NG2 + cells. IQGAP1 and adenomatous polyposis coli localized in CA1 pyramidal neurons, and Cdc42 activation was followed by IQGAP1 recruitment. These findings suggest that IQGAP1 is upregulated in pre-existed sparing neurons of the CA1 layer undergoing morphological changes after excitoxicity-induced hippocampal CA3 neuronal death. It demonstrates the utility of IQGAP1 as a possible marker for spared pyramidal neurons, which may contribute to structural and functional alternations responsible for the development of epilepsy.

摘要

反复的癫痫发作会导致实验性颞叶癫痫模型中海马回路的永久性改变。癫痫引起的苔藓纤维通路中的发芽和突触重组已经得到了很好的研究。然而,关于苔藓纤维通路以外的发芽和突触重组的研究有限。本研究检查了兴奋性毒性诱导海马 CA3 神经元死亡后经历形态变化的 CA1 锥体神经元的生化变化。IQ 结构域 GTP 酶激活蛋白(IQGAP1)是 Rac1 和 Cdc42 的效应物,是一种肌动蛋白结合蛋白,在红藻氨酸诱导的海马 CA3 神经元变性后,CA1 锥体神经元中上调。IQGAP1 + 细胞与巢蛋白共定位,但与星形胶质细胞或成熟神经元不同。此外,IQGAP1 不是来自新分裂的局部前体或 NG2 + 细胞。IQGAP1 和腺瘤性结肠息肉病定位于 CA1 锥体神经元,Cdc42 激活后 IQGAP1 募集。这些发现表明,在兴奋性毒性诱导的海马 CA3 神经元死亡后经历形态变化的 CA1 层中,预先存在的 spared 神经元中上调了 IQGAP1。它证明了 IQGAP1 作为可能的 spared 锥体神经元标志物的有用性,这可能有助于负责癫痫发生的结构和功能改变。

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