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含卷曲螺旋结构域的无名指 20/无名指 40/WW 结构域衔接蛋白复合物与 p53 相互作用,以调控 DNA 损伤反应中的基因转录。

Ring finger 20/ring finger 40/WW domain-containing adaptor with coiled-coil complex interacts with p53 to regulate gene transcription in DNA damage response.

作者信息

Meng Danni, Guo Kun, Zhang Die, Zhao Cheng, Sun Chuanwen, Zhang Feng

机构信息

College of Life Sciences, Shanghai Normal University, Shanghai 200234, P.R. China.

出版信息

Oncol Lett. 2021 Jun;21(6):436. doi: 10.3892/ol.2021.12697. Epub 2021 Apr 1.

Abstract

p53 is one of the most important tumor suppressor genes, and its primary function is to act as a transcriptional activator to control cell cycle arrest, DNA repair and cellular metabolism by recognizing and binding to specific DNA sequences. Defects in the ring finger (RNF)20/RNF40/WW domain-containing adaptor with coiled-coil (WAC) complex, one of the histone H2B ubiquitination E3 ligases, have been reported to be a key factor in oncogenesis, cancer cell migration and invasion. Histone H2B mono-ubiquitination has been demonstrated to be essential for maintaining the functionality of the p53 tumor suppressor protein. The aim of the present study was to identify any sites in the p53 DNA-binding domain (DBD) specific to the RNF20/RNF40/WAC complex that may be involved in the gene regulation in DNA damage response. The results demonstrated that p53 and the RNF20/RNF40/WAC complex interacted with each other, and the coiled-coil regions in RNF20, RNF40 and WAC were identified to directly interact with p53. The R282 site in the p53 DBD, one of the frequent missense mutations associated with p53 mutation-dependent cancer, was demonstrated to be the key binding site for the RNF20/RNF40/WAC complex. Furthermore, knockout of RNF20/RNF40 suppressed the expression levels of p53 and its target genes in HCT116 cells compared with those in wild-type HCT116 cells. Consistent with these results, the R282W mutation in p53 inhibited the expression levels of p53 and its downstream genes by inactivating the interaction between p53 and RNF20/RNF40 compared with those in wild-type HCT116 cells. In conclusion, the results of the present study revealed the molecular mechanism of the interaction between the RNF20/RNF40/WAC complex and p53, and demonstrated that these proteins regulated gene transcription in the DNA damage response.

摘要

p53是最重要的肿瘤抑制基因之一,其主要功能是作为转录激活因子,通过识别并结合特定DNA序列来控制细胞周期停滞、DNA修复和细胞代谢。据报道,组蛋白H2B泛素化E3连接酶之一的含卷曲螺旋结构域的指环蛋白(RNF)20/RNF40/含WW结构域衔接蛋白(WAC)复合物缺陷是肿瘤发生、癌细胞迁移和侵袭的关键因素。组蛋白H2B单泛素化已被证明对维持p53肿瘤抑制蛋白的功能至关重要。本研究的目的是确定p53 DNA结合结构域(DBD)中可能参与DNA损伤反应基因调控的、对RNF20/RNF40/WAC复合物具有特异性的位点。结果表明,p53与RNF20/RNF40/WAC复合物相互作用,且RNF20、RNF40和WAC中的卷曲螺旋区域被确定可直接与p53相互作用。p53 DBD中的R282位点是与p53突变依赖性癌症相关的常见错义突变之一,被证明是RNF20/RNF40/WAC复合物的关键结合位点。此外,与野生型HCT116细胞相比,敲除RNF20/RNF40可抑制HCT116细胞中p53及其靶基因的表达水平。与这些结果一致,与野生型HCT116细胞相比,p53中的R282W突变通过使p53与RNF20/RNF40之间的相互作用失活,抑制了p53及其下游基因的表达水平。总之,本研究结果揭示了RNF20/RNF40/WAC复合物与p53相互作用的分子机制,并证明这些蛋白质在DNA损伤反应中调节基因转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91ac/8045150/fbe36018e77b/ol-21-06-12697-g00.jpg

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