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Mutant huntingtin can paradoxically protect neurons from death.

机译:突变的亨廷顿蛋白可以反常地保护神经元免于死亡。

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摘要

Huntington's disease (HD) is a progressive neurodegenerative disorder caused by a mutation in the gene huntingtin and characterized by motor, cognitive and psychiatric symptoms. Huntingtin contains a CAG repeat in exon 1. An expansion of this CAG repeat above 35 results in misfolding of Huntingtin, giving rise to protein aggregates and neuronal cell death. There are several transgenic HD mouse models that reproduce most of the features of the human disorder, for example protein inclusions, some neurodegeneration as well as motor and cognitive symptoms. At the same time, a subgroup of the HD transgenic mouse models exhibit dramatically reduced susceptibility to excitotoxicity. The mechanism behind this is unknown. Here, we review the literature regarding this phenomenon, attempt to explain what protein domains are crucial for this phenomenon and point toward a putative mechanism. We suggest, that the C-terminal domain of exon 1 Huntingtin, namely the proline rich domain, is responsible for mediating a neuroprotective effect against excitotoxicity. Furthermore, we point out the possible importance of this mechanism for future therapies in neurological disorders that have been suggested to be associated with excitotoxicity, for example Alzheimer's disease, Parkinson's disease and amyotrophic lateral sclerosis.
机译:亨廷顿舞蹈病(HD)是由亨廷顿基因突变引起的进行性神经退行性疾病,其特征是运动,认知和精神症状。亨廷顿蛋白在外显子1中包含一个CAG重复序列。该CAG重复序列在35以上的扩增导致亨廷顿蛋白错误折叠,从而导致蛋白质聚集和神经元细胞死亡。有几种转基因高清小鼠模型可以再现人类疾病的大多数特征,例如蛋白质包裹体,某些神经退行性变以及运动和认知症状。同时,HD转基因小鼠模型的一个亚组表现出对兴奋性毒性的敏感性大大降低。其背后的机制尚不清楚。在这里,我们回顾有关这种现象的文献,试图解释哪些蛋白质结构域对于这种现象至关重要,并指出了一种可能的机制。我们建议,外显子1 Huntingtin的C末端结构域,即富含脯氨酸的结构域,负责介导针对兴奋性毒性的神经保护作用。此外,我们指出了该机制对于神经系统疾病未来治疗的可能重要性,这些疾病已被证明与兴奋性毒性相关,例如阿尔茨海默氏病,帕金森氏病和肌萎缩性侧索硬化症。

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