Krzeszinski Jing Yan, Choe Vitnary, Shao Jia, Bao Xin, Cheng Haili, Luo Shiwen, Huo Keke, Rao Hai
State Key Laboratory of Genetic Engineering, School of Life Sciences, Fudan University, Shanghai 200433, People's Republic of China Department of Molecular Medicine, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229 First Affiliated Hospital, Nanchang University, Jiangxi 330006, People's Republic of China.
Mol Biol Cell. 2014 Jan;25(2):213-21. doi: 10.1091/mbc.E13-05-0293. Epub 2013 Nov 20.
Although ubiquitin receptor Rad23 has been implicated in bringing ubiquitylated p53 to the proteasome, how Rad23 recognizes p53 remains unclear. We demonstrate that XPC, a Rad23-binding protein, regulates p53 turnover. p53 protein in XPC-deficient cells remains ubiquitylated, but its association with the proteasome is drastically reduced, indicating that XPC regulates a postubiquitylation event. Furthermore, we found that XPC participates in the MDM2-mediated p53 degradation pathway via direct interaction with MDM2. XPC W690S pathogenic mutant is specifically defective for MDM2 binding and p53 degradation. p53 is known to become stabilized following UV irradiation but can be rendered unstable by XPC overexpression, underscoring a critical role of XPC in p53 regulation. Elucidation of the proteolytic role of XPC in cancer cells will help to unravel the detailed mechanisms underlying the coordination of DNA repair and proteolysis.
尽管泛素受体Rad23被认为在将泛素化的p53转运至蛋白酶体的过程中发挥作用,但Rad23如何识别p53仍不清楚。我们证明,Rad23结合蛋白XPC可调节p53的周转。XPC缺陷细胞中的p53蛋白仍保持泛素化状态,但其与蛋白酶体的结合显著减少,这表明XPC调节泛素化后的一个事件。此外,我们发现XPC通过与MDM2直接相互作用参与MDM2介导的p53降解途径。XPC W690S致病突变体在MDM2结合和p53降解方面存在特异性缺陷。已知p53在紫外线照射后会变得稳定,但XPC的过表达可使其变得不稳定,这突出了XPC在p53调节中的关键作用。阐明XPC在癌细胞中的蛋白水解作用将有助于揭示DNA修复与蛋白水解协调的详细机制。