Brain Korea 21 Plus Project for Medical Science, Severance Biomedical Research Institute, Department of Biochemistry and Molecular Biology, Yonsei University School of Medicine, 50-1, Yonsei-Ro, SeoDaeMoon-Ku, Seoul 03722, Republic of Korea.
Department of Biomedical Sciences and Biomedical Engineering, Seoul National University College of Medicine, Seoul 110-799, Republic of Korea.
Biochim Biophys Acta Gene Regul Mech. 2017 Sep;1860(9):962-972. doi: 10.1016/j.bbagrm.2017.07.008. Epub 2017 Jul 27.
Expression of the POK family protein ZNF509L, and -its S1 isoform, is induced by p53 upon exposure to genotoxic stress. Due to alternative splicing of the ZNF509 primary transcript, ZNF509S1 lacks the 6 zinc-fingers and C-terminus of ZNF509L, resulting in only one zinc-finger. ZNF509L and -S1 inhibit cell proliferation by activating p21/CDKN1A and RB transcription, respectively. When cells are exposed to severe DNA damage, p53 activates PUMA (p53-upregulated modulator of apoptosis) transcription. Interestingly, apoptosis due to transcriptional activation of PUMA by p53 is attenuated by ZNF509S1. Thus we investigated the molecular mechanism(s) underlying the transcriptional attenuation and anti-apoptotic effects of ZNF509S1. We show that ZNF509S1 modulation of p53 activity is important in PUMA gene transcription by modulating post-translational modification of p53 by p300. ZNF509S1 directly interacts with p53 and inhibits p300-mediated acetylation of p53 lysine K382, with deacetylation of p53 K382 leading to decreased DNA binding at the p53 response element 1 of the PUMA promoter. ZNF509S1 may play a role not only in cell cycle arrest, by activating RB expression, but also in rescuing cells from apoptotic death by repressing PUMA expression in cells exposed to severe DNA damage.
POK 家族蛋白 ZNF509L 及其 S1 异构体的表达可被 p53 诱导,这是在受到遗传毒性应激后发生的。由于 ZNF509 主要转录物的选择性剪接,ZNF509S1 缺乏 ZNF509L 的 6 个锌指和 C 末端,从而只具有一个锌指。ZNF509L 和 S1 分别通过激活 p21/CDKN1A 和 RB 转录来抑制细胞增殖。当细胞受到严重的 DNA 损伤时,p53 会激活 PUMA(p53 上调的凋亡调节剂)转录。有趣的是,由于 p53 对 PUMA 的转录激活,p53 激活的细胞凋亡会被 ZNF509S1 减弱。因此,我们研究了 ZNF509S1 对转录衰减和抗凋亡作用的分子机制。我们发现,ZNF509S1 通过调节 p300 对 p53 的翻译后修饰,对 p53 活性的调节对 PUMA 基因转录很重要。ZNF509S1 直接与 p53 相互作用,并抑制 p300 介导的 p53 赖氨酸 K382 乙酰化,p53 K382 的去乙酰化导致在 PUMA 启动子的 p53 反应元件 1 上的 DNA 结合减少。ZNF509S1 不仅可以通过激活 RB 表达来在细胞周期停滞中发挥作用,而且可以在细胞受到严重 DNA 损伤时通过抑制 PUMA 表达来挽救细胞免于凋亡死亡。