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Tensor-Based Morphometry and Stereology Reveal Brain Pathology in the Complexin1 Knockout Mouse

机译:张量为基础的形态测量学和体视显示大脑病理学的Complexin1基因敲除小鼠

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摘要

Complexins (Cplxs) are small, soluble, regulatory proteins that bind reversibly to the SNARE complex and modulate synaptic vesicle release. Cplx1 knockout mice (Cplx1−/−) have the earliest known onset of ataxia seen in a mouse model, although hitherto no histopathology has been described in these mice. Nevertheless, the profound neurological phenotype displayed by Cplx1−/− mutants suggests that significant functional abnormalities must be present in these animals. In this study, MRI was used to automatically detect regions where structural differences were not obvious when using a traditional histological approach. Tensor-based morphometry of Cplx1−/− mouse brains showed selective volume loss from the thalamus and cerebellum. Stereological analysis of Cplx1−/− and Cplx1+/+ mice brain slices confirmed the volume loss in the thalamus as well as loss in some lobules of the cerebellum. Finally, stereology was used to show that there was loss of cerebellar granule cells in Cplx1−/− mice when compared to Cplx1+/+ animals. Our study is the first to describe pathological changes in Cplx1−/− mouse brain. We suggest that the ataxia in Cplx1−/− mice is likely to be due to pathological changes in both cerebellum and thalamus. Reduced levels of Cplx proteins have been reported in brains of patients with neurodegenerative diseases. Therefore, understanding the effects of Cplx depletion in brains from Cplx1−/− mice may also shed light on the mechanisms underlying pathophysiology in disorders in which loss of Cplx1 occurs.
机译:复合物(CPLX)是小,可溶的调节蛋白,可逆地与圈套复合物结合并调节突触囊泡释放。 CPLX1敲除小鼠(CPLX1 - / - / - / - / - / sup>)具有最早的已知展开在小鼠模型中观察到的共济失调,尽管这些小鼠中未描述组织病理学。然而,CPLX1 - / - / sup>突变体显示的深度神经表型表明这些动物中必须存在显着的功能异常。在这项研究中,MRI用于自动检测在使用传统的组织学方法时结构差异不明显的区域。 CPLX1 - / - / sup>鼠标大脑的张于卷的形态学,显示出丘脑和小脑的选择性体积损失。 CPLX1 - / - / sup>和cplx1 + / + / sup>小鼠脑切片的立体学分析证实了丘脑中的体积损失以及细菌的一些小叶中的损失。最后,与CPLX1 + / sup>动物相比,立体内容旨在表明CPLX1 -/ sup>小鼠中存在小脑颗粒细胞。我们的研究是第一个描述CPLX1 - / - 小鼠大脑的病理变化。我们建议CPLX1 - / - / sup>小鼠的共济失调可能是由于小脑和丘脑的病理变化。已在神经变性疾病患者的脑中报道了降低的CPLX蛋白水平。因此,了解来自CPLX1 - / - / - / sup>小鼠的CPLX耗尽在大脑中的效果也可以阐明在疾病中疾病的疾病潜气生理学的机制脱光。

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