Mungamuri Sathish Kumar, Qiao Rui F, Yao Shen, Manfredi James J, Gu Wei, Aaronson Stuart A
Department of Oncological Sciences, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Institute for Cancer Genetics and Department of Pathology and Cell Biology, College of Physicians and Surgeons, Columbia University, New York, NY 10032, USA.
Cell Rep. 2016 Mar 22;14(11):2528-37. doi: 10.1016/j.celrep.2016.02.049. Epub 2016 Mar 10.
The H3K9me3 repressive histone conformation of p53 target promoters is abrogated in response to p53 activation by MDM2-mediated SUV39H1 degradation. Here, we present evidence that the USP7 deubiquitinase protects SUV39H1 from MDM2-mediated ubiquitination in the absence of p53 stimulus. USP7 occupies p53 target promoters in unstressed conditions, a process that is abrogated with p53 activation associated with loss of the H3K9me3 mark on these same promoters. Mechanistically, USP7 forms a trimeric complex with MDM2 and SUV39H1, independent of DNA, and modulates MDM2-dependent SUV39H1 ubiquitination. Furthermore, we show that this protective function of USP7 on SUV39H1 is independent of p53. Finally, USP7 blocking cooperates with p53 in inducing apoptosis by enhancing p53 promoter occupancy and dependent transactivation of target genes. These results uncover a layer of the p53 transcriptional program mediated by USP7, which restrains relaxation of local chromatin conformation at p53 target promoters.
在MDM2介导的SUV39H1降解激活p53的情况下,p53靶启动子的H3K9me3抑制性组蛋白构象被消除。在此,我们提供证据表明,在缺乏p53刺激的情况下,USP7去泛素酶可保护SUV39H1免受MDM2介导的泛素化作用。在未受应激的条件下,USP7占据p53靶启动子,而随着p53激活,这一过程被消除,同时这些相同启动子上的H3K9me3标记也消失。从机制上讲,USP7与MDM2和SUV39H1形成三聚体复合物,不依赖于DNA,并调节MDM2依赖的SUV39H1泛素化。此外,我们表明USP7对SUV39H1的这种保护功能不依赖于p53。最后,USP7阻断通过增强p53对启动子的占据以及靶基因的依赖性反式激活,与p53协同诱导细胞凋亡。这些结果揭示了由USP7介导的p53转录程序的一个层面,该层面抑制了p53靶启动子处局部染色质构象的松弛。