首页> 外文期刊>The Journal of biological chemistry >Ubiquitin-specific Protease 7 Regulates Nucleotide Excision Repair through Deubiquitinating XPC Protein and Preventing XPC Protein from Undergoing Ultraviolet Light-induced and VCP/p97 Protein-regulated Proteolysis
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Ubiquitin-specific Protease 7 Regulates Nucleotide Excision Repair through Deubiquitinating XPC Protein and Preventing XPC Protein from Undergoing Ultraviolet Light-induced and VCP/p97 Protein-regulated Proteolysis

机译:特异性素蛋白酶7通过脱硫XPC蛋白来调节核苷酸切除修复,并防止XPC蛋白从紫外线诱导和VCP / P97蛋白调节的蛋白水解

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Ubiquitin specific protease 7 (USP7) is a known deubiquitinating enzyme for tumor suppressor p53 and its downstream regulator, E3 ubiquitin ligase Mdm2. Here we report that USP7 regulates nucleotide excision repair (NER) via deubiquitinating xeroderma pigmentosum complementation group C (XPC) protein, a critical damage recognition factor that binds to helix-distorting DNA lesions and initiates NER. XPC is ubiquitinated during the early stage of NER of UV light-induced DNA lesions. We demonstrate that transiently compromising cellular USP7 by siRNA and chemical inhibition leads to accumulation of ubiquitinated forms of XPC, whereas complete USP7 deficiency leads to rapid ubiquitin-mediated XPC degradation upon UV irradiation. We show that USP7 physically interacts with XPC in vitro and in vivo. Overexpression of wild-type USP7, but not its catalytically inactive or interaction-defective mutants, reduces the ubiquitinated forms of XPC. Importantly, USP7 efficiently deubiquitinates XPC-ubiquitin conjugates in deubiquitination assays in vitro. We further show that valosin-containing protein (VCP)/p97 is involved in UV light-induced XPC degradation in USP7-deficient cells. VCP/p97 is readily recruited to DNA damage sites and colocalizes with XPC. Chemical inhibition of the activity of VCP/p97 ATPase causes an increase in ubiquitinated XPC on DNA-damaged chromatin. Moreover, USP7 deficiency severely impairs the repair of cyclobutane pyrimidine dimers and, to a lesser extent, affects the repair of 6-4 photoproducts. Taken together, our findings uncovered an important role of USP7 in regulating NER via deubiquitinating XPC and by preventing its VCP/p97-regulated proteolysis.
机译:泛素特异性蛋白酶7(USP7)是肿瘤抑制剂P53的已知脱水酶及其下游调节剂,E3泛素连接酶MDM2。在这里,我们认为USP7通过脱硫Xeroderma颜料互补基团C(XP​​C)蛋白来调节核苷酸切除修复(NER),临界损伤识别因子与螺旋扭曲DNA病变结合并引发NER。 XPC在UV光诱导的DNA病变的初期的早期阶段是泛滥的。我们证明,通过siRNA和化学抑制瞬时损害细胞USP7导致普遍存化形式的XPC的积累,而完全USP7缺陷导致uviquitin介导的XPC降解在紫外线照射时脱脂。我们表明USP7在体外和体内物理地与XPC相互作用。野生型USP7的过度表达,但不是其催化活性或相互作用缺陷突变体,降低了荧光染色的XPC形式。重要的是,USP7有效地在体外脱硫酸化测定中的XPC-ubiquitin缀合物。我们进一步表明,缬氨酸蛋白(VCP)/ P97参与UV光诱导的USP7缺陷细胞中的XPC降解。 VCP / P97容易招募到DNA损伤部位并用XPC结合。 VCP / P97 ATP酶活性的化学抑制导致DNA损伤染色质染色体XPC的增加。此外,USP7缺陷严重损害了环丁烷嘧啶二聚体的修复,并且在较小程度上影响了6-4个光POPRODUCT的修复。在一起,我们的研究结果通过脱硫XPC揭示了USP7在调节Ner中的重要作用,并通过防止其VCP / P97调节的蛋白水解。

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