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首页> 外文期刊>Human Molecular Genetics >Structural and molecular myelination deficits occur prior to neuronal loss in the YAC128 and BACHD models of Huntington disease
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Structural and molecular myelination deficits occur prior to neuronal loss in the YAC128 and BACHD models of Huntington disease

机译:在亨廷顿病的YAC128和BACHD模型中,神经元丢失之前发生结构和分子髓鞘缺乏症

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White matter (WM) atrophy is a significant feature of Huntington disease (HD), although its aetiology and early pathological manifestations remain poorly defined. In this study, we aimed to characterize WM-related features in the transgenic YAC128 and BACHD models of HD. Using diffusion tensor magnetic resonance imaging (DT-MRI), we demonstrate that microstructural WM abnormalities occur from an early age in YAC128 mice. Similarly, electron microscopy analysis of myelinated fibres of the corpus callosum indicated that myelin sheaths are thinner in YAC128 mice as early as 1.5 months of age, well before any neuronal loss can be detected. Transcript levels of myelin-related genes in striatal and cortical tissues were significantly lower in YAC128 mice from 2 weeks of age, and these findings were replicated in differentiated primary oligodendrocytes from YAC128 mice, suggesting a possible mechanistic explanation for the observed structural deficits. Concordant with these observations, we demonstrate reduced expression of myelin-related genes at 3 months of age and WM microstructural abnormalities using DT-MRI at 12 months of age in the BACHD rats. These findings indicate that WM deficits in HD are an early phenotype associated with cell-intrinsic effects of mutant huntingtin on myelin-related transcripts in oligodendrocytes, and raise the possibility that WM abnormalities may be an early contributing factor to the pathogenesis of HD.
机译:白质(WM)萎缩是亨廷顿病(HD)的一个重要特征,尽管其病因和早期病理表现仍不清楚。在这项研究中,我们旨在表征高清的转基因YAC128和BACHD模型中与WM相关的特征。使用扩散张量磁共振成像(DT-MRI),我们证明了从YAC128小鼠的早期开始就发生了微结构WM异常。同样,对call体髓鞘纤维的电子显微镜分析表明,YAC128小鼠的髓鞘较早在1.5个月大时就较薄,远远早于可以检测到任何神经元丢失。从2周龄开始,YAC128小鼠纹状体和皮质组织中髓鞘相关基因的转录水平显着降低,并且这些发现在YAC128小鼠的分化的初级少突胶质细胞中重复存在,这为观察到的结构缺陷提供了可能的机械解释。与这些观察结果一致,我们证明了BACHD大鼠在3个月大时髓磷脂相关基因的表达减少以及在12个月大时使用DT-MRI观察到WM微结构异常。这些发现表明,HD中的WM缺陷是一种早期表型,与突变型亨廷顿蛋白对少突胶质细胞的髓鞘相关转录本的细胞内在作用有关,并增加了WM异常可能是HD发病机制的早期促成因素的可能性。

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