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Deficits in Motor Coordination with Aberrant Cerebellar Development in Mice Lacking Testicular Orphan Nuclear Receptor 4

机译:缺乏睾丸孤儿核受体的小鼠的运动协调与小脑发育异常。4

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摘要

Since testicular orphan nuclear receptor 4 (TR4) was cloned, its physiological function has remained largely unknown. Throughout postnatal development, TR4-knockout (TR4−/−) mice exhibited behavioral deficits in motor coordination, suggesting impaired cerebellar function. Histological examination of the postnatal TR4−/− cerebellum revealed gross abnormalities in foliation; specifically, lobule VII in the anterior vermis was missing. Further analyses demonstrated that the laminations of the TR4−/− cerebellar cortex were changed, including reductions in the thickness of the molecular layer and the internal granule layer, as well as delayed disappearance of the external granule cell layer (EGL). These lamination irregularities may result from interference with granule cell proliferation within the EGL, delayed inward migration of postmitotic granule cells, and a higher incidence of apoptotis. In addition, abnormal development of Purkinje cells was observed in the postnatal TR4−/− cerebellum, as evidenced by aberrant dendritic arborization and reduced calbindin staining intensity. Expression of Pax-6, Sonic Hedgehog (Shh), astrotactin (Astn), reelin, and Cdk-5, genes correlated with the morphological development of the cerebellum, is reduced in the developing TR4−/− cerebellum. Together, our findings suggest that TR4 is required for normal cerebellar development.
机译:自从睾丸孤儿核受体4(TR4)被克隆以来,其生理功能仍然很大程度上未知。在整个产后发育过程中,TR4基因敲除(TR4 -// )小鼠在运动协调方面表现出行为缺陷,提示小脑功能受损。产后TR4 -// 小脑的组织学检查显示,叶肉有明显异常。具体来说,前ver小叶VII缺失。进一步的分析表明,TR4 -// 小脑皮质的层压发生了改变,包括分子层和内部颗粒层厚度的减少以及外部颗粒细胞层的消失消失。 (EGL)。这些分层不规则性可能是由于干扰了EGL中颗粒细胞的增殖,有丝分裂后颗粒细胞向内迁移的延迟以及凋亡发生率的升高。此外,在产后TR4 -/-小脑中观察到了浦肯野细胞的异常发育,这由异常的树突状乔木和降低的钙结合蛋白染色强度所证实。与小脑形态发育相关的基因Pax-6,Sonic Hedgehog(Shh),astrotactin(Astn),reelin和Cdk-5的表达在正在发育的TR4 -/-中降低小脑。在一起,我们的发现表明TR4是正常的小脑发育所必需的。

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