Mei Fang C, Young Travis W, Liu Jinsong, Cheng Xiaodong
Department of Pharmacology and Toxicology, Sealy Center for Cancer Cell Biology, School of Medicine, The University of Texas Medical Branch, Galveston, Texas 77555-1031, USA.
FASEB J. 2006 Mar;20(3):497-9. doi: 10.1096/fj.05-4586fje. Epub 2005 Dec 29.
Opioid binding protein/cell adhesion molecule-like gene (OPCML), a recently identified tumor-suppressor, is frequently inactivated by allele loss and CpG island promoter methylation in epithelial ovarian cancer. Since elevated activation of the RAS signaling pathway, including overexpression of HER-2/neu and mutations of RAS and BRAF, is common in human ovarian carcinoma, we examined the cellular effect of oncogenic RAS on the expression status of OPCML in a genetically defined human ovarian cancer model. Our study revealed that RAS(V12)-mediated oncogenic transformation was accompanied by a concomitant loss of OPCML expression. Methylation-sensitive PCR analysis showed that the OPCML promoter was hypermethylated in RAS-transformed human ovarian epithelial cells (T29H) and that treatment with the DNA methyltransferase inhibitor 5'-aza-2'-deoxycytidine promoted demethylation of the OPCML promoter and restored OPCML expression in T29H cells. Furthermore, suppression of oncogenic RAS activity by stable siRNA specific for HRAS(V12) led to the demethylation and re-expression of OPCML in T29H cells, demonstrating that oncogenic RAS activity is directly responsible for the observed OPCML promoter hypermethylation and epigenetic gene silencing of OPCML. Taken together, our study suggests that elevation of the RAS signaling pathway may play an important role in epigenetic inactivation of OPCML in human epithelial ovarian cancer.
阿片样物质结合蛋白/细胞黏附分子样基因(OPCML)是最近发现的一种肿瘤抑制基因,在上皮性卵巢癌中常因等位基因缺失和CpG岛启动子甲基化而失活。由于RAS信号通路的激活增强,包括HER-2/neu的过表达以及RAS和BRAF的突变,在人类卵巢癌中很常见,我们在一个基因明确的人类卵巢癌模型中研究了致癌性RAS对OPCML表达状态的细胞效应。我们的研究表明,RAS(V12)介导的致癌转化伴随着OPCML表达的同时丧失。甲基化敏感性PCR分析显示,OPCML启动子在RAS转化的人类卵巢上皮细胞(T29H)中发生高甲基化,并且用DNA甲基转移酶抑制剂5'-氮杂-2'-脱氧胞苷处理可促进OPCML启动子的去甲基化并恢复T29H细胞中OPCML的表达。此外,用针对HRAS(V12)的稳定siRNA抑制致癌性RAS活性导致T29H细胞中OPCML的去甲基化和重新表达,表明致癌性RAS活性直接导致观察到的OPCML启动子高甲基化和OPCML的表观遗传基因沉默。综上所述,我们的研究表明RAS信号通路的增强可能在人类上皮性卵巢癌中OPCML的表观遗传失活中起重要作用。