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HIC1(癌症中高甲基化1)的小泛素样修饰蛋白化对于DNA修复并非必需,但对于对无法修复的DNA双链断裂(DSB)的凋亡性DNA损伤反应(DDR)至关重要。

HIC1 (hypermethylated in cancer 1) SUMOylation is dispensable for DNA repair but is essential for the apoptotic DNA damage response (DDR) to irreparable DNA double-strand breaks (DSBs).

作者信息

Paget Sonia, Dubuissez Marion, Dehennaut Vanessa, Nassour Joe, Harmon Brennan T, Spruyt Nathalie, Loison Ingrid, Abbadie Corinne, Rood Brian R, Leprince Dominique

机构信息

University Lille, CNRS, Institut Pasteur de Lille, UMR 8161-M3T-Mechanisms of Tumorigenesis and Targeted Therapies, Lille, France.

Present Address: Maisonneuve-Rosemont Hospital Research Center, Maisonneuve-Rosemont Hospital, Boulevard l'Assomption Montreal, Canada.

出版信息

Oncotarget. 2017 Jan 10;8(2):2916-2935. doi: 10.18632/oncotarget.13807.

Abstract

The tumor suppressor gene HIC1 (Hypermethylated In Cancer 1) encodes a transcriptional repressor mediating the p53-dependent apoptotic response to irreparable DNA double-strand breaks (DSBs) through direct transcriptional repression of SIRT1. HIC1 is also essential for DSB repair as silencing of endogenous HIC1 in BJ-hTERT fibroblasts significantly delays DNA repair in functional Comet assays. HIC1 SUMOylation favours its interaction with MTA1, a component of NuRD complexes. In contrast with irreparable DSBs induced by 16-hours of etoposide treatment, we show that repairable DSBs induced by 1 h etoposide treatment do not increase HIC1 SUMOylation or its interaction with MTA1. Furthermore, HIC1 SUMOylation is dispensable for DNA repair since the non-SUMOylatable E316A mutant is as efficient as wt HIC1 in Comet assays. Upon induction of irreparable DSBs, the ATM-mediated increase of HIC1 SUMOylation is independent of its effector kinase Chk2. Moreover, irreparable DSBs strongly increase both the interaction of HIC1 with MTA1 and MTA3 and their binding to the SIRT1 promoter. To characterize the molecular mechanisms sustained by this increased repression potential, we established global expression profiles of BJ-hTERT fibroblasts transfected with HIC1-siRNA or control siRNA and treated or not with etoposide. We identified 475 genes potentially repressed by HIC1 with cell death and cell cycle as the main cellular functions identified by pathway analysis. Among them, CXCL12, EPHA4, TGFβR3 and TRIB2, also known as MTA1 target-genes, were validated by qRT-PCR analyses. Thus, our data demonstrate that HIC1 SUMOylation is important for the transcriptional response to non-repairable DSBs but dispensable for DNA repair.

摘要

肿瘤抑制基因HIC1(癌症中高甲基化1)编码一种转录抑制因子,通过直接转录抑制SIRT1介导对无法修复的DNA双链断裂(DSB)的p53依赖性凋亡反应。HIC1对DSB修复也至关重要,因为在BJ-hTERT成纤维细胞中内源性HIC1的沉默在功能性彗星试验中显著延迟了DNA修复。HIC1的SUMO化有利于其与NuRD复合物的一个组分MTA1相互作用。与依托泊苷处理16小时诱导的无法修复的DSB相反,我们发现依托泊苷处理1小时诱导的可修复的DSB不会增加HIC1的SUMO化或其与MTA1的相互作用。此外,HIC1的SUMO化对于DNA修复是可有可无的,因为在彗星试验中不可SUMO化的E316A突变体与野生型HIC1一样有效。在诱导无法修复的DSB后,ATM介导的HIC1 SUMO化增加与其效应激酶Chk2无关。此外,无法修复的DSB强烈增加HIC1与MTA1和MTA3的相互作用以及它们与SIRT1启动子的结合。为了表征这种增加的抑制潜力所维持的分子机制,我们建立了用HIC1-siRNA或对照siRNA转染并经或未经依托泊苷处理的BJ-hTERT成纤维细胞的全局表达谱。我们鉴定出475个可能被HIC1抑制的基因,细胞死亡和细胞周期是通过通路分析确定的主要细胞功能。其中,CXCL12、EPHA4、TGFβR3和TRIB2,也被称为MTA1靶基因,通过qRT-PCR分析得到了验证。因此,我们的数据表明HIC1的SUMO化对于对无法修复的DSB的转录反应很重要,但对于DNA修复是可有可无的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7020/5356852/05ec220a7a87/oncotarget-08-2916-g001.jpg

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