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XRCC1 Mutation is Associated with PARP1 Hyperactivation and Cerebellar Ataxia

机译:XRCC1突变与PARP1过度激活和小脑共济失调相关。

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摘要

XRCC1 is a molecular scaffold protein that assembles multi-protein complexes involved in DNA single-strand break repair,. Here, we show that biallelic mutations in human XRCC1 are associated with ocular motor apraxia, axonal neuropathy, and progressive cerebellar ataxia. XRCC1-mutant patient cells exhibit not only reduced rates of single-strand break repair but also elevated levels of protein ADP-ribosylation; a phenotype recapitulated in a related syndrome caused by mutations in the XRCC1 partner protein PNKP- and implicating hyperactivation of poly (ADP-ribose) polymerase/s as a cause of cerebellar ataxia. Indeed, remarkably, genetic deletion of Parp1 rescued normal cerebellar ADP-ribose levels and reduced the loss of cerebellar neurons and ataxia in Xrcc1-defective mice, identifying a molecular mechanism by which endogenous single-strand breaks trigger neuropathology. Collectively, these data establish the importance of XRCC1 protein complexes for normal neurological function and identify PARP1 as a therapeutic target in DNA strand break repair-defective disease.
机译:XRCC1是一种分子支架蛋白,可组装涉及DNA单链断裂修复 的多蛋白复合物。在这里,我们显示人XRCC1中的双等位基因突变与眼运动性失用症,轴突神经病和进行性小脑共济失调相关。 XRCC1突变的患者细胞不仅显示出单链断裂修复率降低,而且蛋白ADP-核糖基化水平升高。 XRCC1伴侣蛋白PNKP -的突变引起的相关综合征中概括的表型,并暗示聚(ADP-核糖)聚合酶/ s过度活化是小脑共济失调的原因。实际上,值得注意的是,Parp1的基因缺失可以挽救正常的小脑ADP-核糖水平,并减少Xrcc1缺陷小鼠的小脑神经元丢失和共济失调,从而确定了内源性单链断裂触发神经病理学的分子机制。总的来说,这些数据确立了XRCC1蛋白复合物对于正常神经功能的重要性,并确定PARP1是DNA链断裂修复缺陷性疾病的治疗靶标。

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