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首页> 外文期刊>Oncogene >Epigenetic identification of ADAMTS18 as a novel 16q23.1 tumor suppressor frequently silenced in esophageal, nasopharyngeal and multiple other carcinomas
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Epigenetic identification of ADAMTS18 as a novel 16q23.1 tumor suppressor frequently silenced in esophageal, nasopharyngeal and multiple other carcinomas

机译:ADAMTS18作为一种新型16q23.1抑癌剂的表观遗传学鉴定在食道癌,鼻咽癌和其他多种癌症中经常沉默

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Tumor suppressor genes (TSGs) often locate at chromosomal regions with frequent deletions in tumors. Loss of 16q23 occurs frequently in multiple tumors, indicating the presence of critical TSGs at this locus, such as the well-studied WWOX. Herein, we found that ADAMTS18, located next to WWOX, was significantly downregulated in multiple carcinoma cell lines. No deletion of ADAMTS18 was detected with multiplex differential DNA-PCR or high-resolution 1-Mb array-based comparative genomic hybridization (CGH) analysis. Instead, methylation of the ADAMTS18 promoter CpG Island was frequently detected with methylation-specific PCR and bisulfite genome sequencing in multiple carcinoma cell lines and primary carcinomas, but not in any nontumor cell line and normal epithelial tissue. Both pharmacological and genetic demethylation dramatically induced the ADAMTS18 expression, indicating that CpG methylation directly contributes to the tumor-specific silencing of ADAMTS18. Ectopic ADAMTS18 expression led to significant inhibition of both anchorage-dependent and -independent growth of carcinoma cells lacking the expression. Thus, through functional epigenetics, we identified ADAMTS18 as a novel functional tumor suppressor, being frequently inactivated epigenetically in multiple carcinomas.
机译:抑癌基因(TSG)通常位于染色体区域,在肿瘤中频繁缺失。 16q23的丢失经常发生在多个肿瘤中,表明在这个基因位点存在关键的TSG,例如研究充分的WWOX。在这里,我们发现位于WWOX旁边的ADAMTS18在多种癌细胞系中显着下调。使用多重差异DNA-PCR或基于高分辨率1-Mb阵列的比较基因组杂交(CGH)分析未检测到ADAMTS18的缺失。取而代之的是,在多个癌细胞系和原发性癌中,经常使用甲基化特异性PCR和亚硫酸氢盐基因组测序检测到ADAMTS18启动子CpG Island的甲基化,但在任何非肿瘤细胞系和正常上皮组织中却未检测到。药理学和遗传上的去甲基化作用均显着诱导了ADAMTS18的表达,表明CpG甲基化直接促进了ADAMTS18的肿瘤特异性沉默。异位ADAMTS18的表达可显着抑制缺乏表达的癌细胞的锚定依赖性和非依赖性生长。因此,通过功能性表观遗传学,我们确定ADAMTS18是一种新型的功能性肿瘤抑制因子,在多种癌症中经常被表观遗传学灭活。

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