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The USP7/Dnmt1 complex stimulates the DNA methylation activity of Dnmt1 and regulates the stability of UHRF1

机译:USP7 / Dnmt1复合物刺激Dnmt1的DNA甲基化活性并调节UHRF1的稳定性

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Aberrant DNA methylation is often associated with cancer and the formation of tumors; however, the underlying mechanisms, in particular the recruitment and regulation of DNA methyltransferases remain largely unknown. In this study, we identified USP7 as an interaction partner of Dnmt1 and UHRF1 in vivo. Dnmt1 and USP7 formed a soluble dimer complex that associated with UHRF1 as a trimeric complex on chromatin. Complex interactions were mediated by the C-terminal domain of USP7 with the TS-domain of Dnmt1, whereas the TRAF-domain of USP7 bound to the SRA-domain of UHRF1. USP7 was capable of targeting UHRF1 for deubiquitination and affects UHRF1 protein stability in vivo. Furthermore, Dnmt1, UHRF1 and USP7 co-localized on silenced, methylated genes in vivo. Strikingly, when analyzing the impact of UHRF1 and USP7 on Dnmt1-dependent DNA methylation, we found that USP7 stimulated both the maintenance and de novo DNA methylation activity of Dnmt1 in vitro. Therefore, we propose a dual role of USP7, regulating the protein turnover of UHRF1 and stimulating the enzymatic activity of Dnmt1 in vitro and in vivo.
机译:DNA甲基化异常通常与癌症和肿瘤形成有关;但是,其潜在机制,尤其是DNA甲基转移酶的募集和调节仍是未知之数。在这项研究中,我们确定USP7是Dnmt1和UHRF1在体内的相互作用伴侣。 Dnmt1和USP7形成了与UHRF1相关的可溶性二聚体复合物,为染色质上的三聚体复合物。复杂的相互作用是由USP7的C末端结构域与Dnmt1的TS结构域介导的,而USP7的TRAF结构域则与UHRF1的SRA结构域结合。 USP7能够靶向UHRF1进行去泛素化,并影响UHRF1蛋白质在体内的稳定性。此外,Dnmt1,UHRF1和USP7在体内共定位在沉默的甲基化基因上。令人惊讶的是,当分析UHRF1和USP7对Dnmt1依赖性DNA甲基化的影响时,我们发现USP7在体外刺激了Dnmt1的维持和从头DNA甲基化活性。因此,我们提出了USP7的双重作用,它调节UHRF1的蛋白质更新并在体外和体内刺激Dnmt1的酶促活性。

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