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The Huntington's disease protein interacts with p53 and CREB-binding protein and represses transcription

机译:亨廷顿舞蹈病蛋白与p53和CREB结合蛋白相互作用并抑制转录

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摘要

Huntington's Disease (HD) is caused by an expansion of a poly- glutamine tract within the huntingtin (htt) protein. Pathogenesis in HD appears to include the cytoplasmic cleavage of htt and release of an amino-terminal fragment capable of nuclear localization. We have investigated potential consequences to nuclear function of a pathogenic amino-terminal region of htt (httex1p) including ag- gregation. protein--protein interactions, and transcription. httex1p was found to coaggregate with p53 in inclusions generated in cell culture and to interact with p53 in vitro and in cell culture. Expanded httex1p represses transcription of the p53-regulated promoters, p21~WAF1/CIP1 and MDR-1. httex1p was also found to interact in for with CREB-binding protein (CBP) and mSin3a, and CBP to localize to neuronal intranuclear inclusions in a transgenic mouse model of HD. These results raise the possibility that ex- panded repeat htt causes aberrant transcriptional regulation through its interaction with cellular transcription factors which may result in neuronal dysfunction and cell death in HD.
机译:亨廷顿舞蹈病(HD)是由亨廷顿蛋白(htt)内的聚谷氨酰胺束扩张引起的。 HD的发病机制似乎包括htt的细胞质裂解和能够核定位的氨基末端片段的释放。我们已经研究了对htt(httex1p)病原性氨基末端区域(包括聚集)的核功能的潜在影响。蛋白质-蛋白质相互作用和转录。发现httex1p在细胞培养物中产生的内含物中与p53聚集在一起,并在体外和细胞培养物中与p53相互作用。扩大的httex1p抑制p53调控的启动子p21〜WAF1 / CIP1和MDR-1的转录。还发现httex1p与CREB结合蛋白(CBP)和mSin3a相互作用,并且CBP在HD转基因小鼠模型中定位于神经元核内包涵体。这些结果增加了扩展的重复序列htt通过与细胞转录因子相互作用而引起异常转录调控的可能性,这可能导致HD的神经元功能障碍和细胞死亡。

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