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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Cross-seeding fibrillation of Q/N-rich proteins offers new pathomechanism of polyglutamine diseases.
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Cross-seeding fibrillation of Q/N-rich proteins offers new pathomechanism of polyglutamine diseases.

机译:富含Q / N的蛋白质的交叉播种原纤维化为多谷氨酰胺疾病提供了新的发病机制。

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摘要

A pathological hallmark of the Huntington's disease (HD) is intracellular inclusions containing a huntingtin (Htt) protein with an elongated polyglutamine tract. Aggregation of mutant Htt causes abnormal protein-protein interactions, and the functional dysregulation of aggregate-interacting proteins (AIPs) has been proposed as a pathomechanism of HD. Despite this, a molecular mechanism remains unknown how Htt aggregates sequester AIPs. We note an RNA-binding protein, TIA-1, as a model of AIPs containing a Q/N-rich sequence and suggest that in vitro and in vivo Htt fibrillar aggregates function as a structural template for inducing insoluble fibrillation of TIA-1. It is also plausible that such a cross-seeding activity of Htt aggregates represses the physiological function of TIA-1. We thus propose that Htt aggregates act as an intracellular hub for the cross-seeded fibrillation of Q/N-rich AIPs and that a cross-seeding reaction is a molecular origin to cause diverse pathologies in a polyglutamine disease.
机译:亨廷顿舞蹈病(HD)的病理特征是细胞内包裹体,其中包含带有伸长的聚谷氨酰胺束的亨廷顿蛋白(Htt)。突变体Htt的聚集会引起异常的蛋白-蛋白相互作用,聚集相互作用蛋白(AIP)的功能失调已被提议作为HD的发病机制。尽管如此,Htt如何聚集螯合剂AIP的分子机制仍然未知。我们注意到一个RNA结合蛋白TIA-1,作为包含丰富Q / N序列的AIPs模型,并建议体外和体内Htt原纤维聚集体起诱导TIA-1不溶性原纤维化的结构模板的作用。 Htt聚集体的这种交叉播种活性抑制TIA-1的生理功能也是合理的。因此,我们建议Htt聚集体充当富含Q / N的AIP的交叉播种原纤化的细胞内枢纽,并且交叉播种反应是引起多谷氨酰胺疾病的多种病理的分子起源。

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