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Huntington proteolysis in Huntington disease

机译:亨廷顿病中的亨廷顿蛋白水解

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The hypothesis that htt proteolysis represents a critical step in Huntington disease (HD) pathogenesis was first suggested in 1996 when htt was identified as a substrate for caspase-3. Indeed, htt was the first caspase substrate to be identified in the brain. Since that time, the identification of caspase-generated N -terminal htt fragments in the patient brain and the accelerated phenotype of transgenic mice expressing truncated fragments of htt support the hypothesis that htt proteolysis contributes to the pathogenesis of htt. However, selective and quantitative neuronal loss has so far been observed only in mice with expression of full-length human htt, suggesting the possibility that generating htt fragments from the intact protein may be essential for selective neuronal loss to be evident. Furthermore, a characteristic neuropathological hallmark of HD in patient brain and animal models is the presence of intracellular aggregates composed of htt fragments containing the polyglutamine expansion. Because numerous studies have demonstrated enhanced cytotoxicity and aggregenic potential of amino-terminal htt fragments containing expanded polyglutamine repeats, an understanding of precisely how htt is cleaved within the brain may result in novel therapeutic approaches for HD. In this review, we integrate many observations on proteolysis in HD, attempt to synthesize a coherent view of how proteolysis may contribute to the pathogenesis of HD, and comment on the future potential of protease inhibitors as a therapeutic strategy for this devastating illness. < copyright > 2003 Elsevier B.V. All rights reserved.
机译:1996年,当htt被确定为caspase-3的底物时,首次提出了htt蛋白水解是亨廷顿病(HD)发病机理中关键步骤的假设。实际上,htt是大脑中第一个被鉴定的caspase底物。从那时起,对患者大脑中caspase生成的N末端htt片段的鉴定以及表达htt截短片段的转基因小鼠的加速表型支持了htt蛋白水解促进htt发病机理的假说。然而,迄今为止,仅在表达全长人HTT的小鼠中观察到选择性和定量的神经元丢失,这表明从完整蛋白中产生HTT片段可能对于选择性神经元丢失很重要。此外,患者脑部和动物模型中HD的特征性神经病理学特征是细胞内聚集体的存在,该聚集体由包含多聚谷氨酰胺膨胀的htt片段组成。由于大量研究表明,含有扩展的聚谷氨酰胺重复序列的氨基末端htt片段具有增强的细胞毒性和聚集作用,因此,准确了解htt在大脑中的裂解方式可能会导致HD的新颖治疗方法。在这篇综述中,我们整合了许多关于高清蛋白水解的观察结果,试图对蛋白水解如何促进高清发病机理做出一致的看法,并评论蛋白酶抑制剂作为这种毁灭性疾病的治疗策略的未来潜力。 <版权> 2003 Elsevier B.V.保留所有权利。

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