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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Chen, Y.-C.a b , Huang, R.-L.b c , Huang, Y.-K.d , Liao, Y.-P.b e , Su, P.-H.b c , Wang, H.-C.b , Chang, C.-C.a b , Lin, Y.-W.f , Yu, M.-H.b , Chu, T.-Y.g , Lai, H.-C.a b c h i Methylomics analysis identifies epigenetically silenced genes and implies an activation of β-catenin signaling in cervical cancer
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Chen, Y.-C.a b , Huang, R.-L.b c , Huang, Y.-K.d , Liao, Y.-P.b e , Su, P.-H.b c , Wang, H.-C.b , Chang, C.-C.a b , Lin, Y.-W.f , Yu, M.-H.b , Chu, T.-Y.g , Lai, H.-C.a b c h i Methylomics analysis identifies epigenetically silenced genes and implies an activation of β-catenin signaling in cervical cancer

机译:Chen,Y.-Ca b,Huang,R.-Lb c,Huang,Y.-Kd,Liao,Y.-Pb e,Su,P.-Hb c,Wang,H.-Cb,Chang,C. -Ca b,Lin,Y.-Wf,Yu,M.-Hb,Chu,T.-Yg,Lai,H.Ca bchi甲基组学分析可鉴定表观遗传沉默基因并暗示β-catenin信号在宫颈癌中的激活

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Using DNA methylation biomarkers in cancer detection is a potential direction in clinical testing. Some methylated genes have been proposed for cervical cancer detection; however, more reliable methylation markers are needed. To identify new hypermethylated genes in the discovery phase, we compared the methylome between a pool of DNA from normal cervical epithelium (n = 19) and a pool of DNA from cervical cancer tissues (n = 38) using a methylation bead array. We integrated the differentially methylated genes with public gene expression databases, which resulted in 91 candidate genes. Based on gene expression after demethylation treatment in cell lines, we confirmed 61 genes for further validation. In the validation phase, quantitative MSP and bisulfite pyrosequencing were used to examine their methylation level in an independent set of clinical samples. Fourteen genes, including ADRA1D, AJAP1, COL6A2, EDN3, EPO, HS3ST2, MAGI2, POU4F3, PTGDR, SOX8, SOX17, ST6GAL2, SYT9, and ZNF614, were significantly hypermethylated in CIN3+ lesions. The sensitivity, specificity, and accuracy of POU4F3 for detecting CIN3+ lesions were 0.88, 0.82, and 0.85, respectively. A bioinformatics function analysis revealed that AJAP1, EDN3, EPO, MAGI2, and SOX17 were potentially implicated in β-catenin signaling, suggesting the epigenetic dysregulation of this signaling pathway during cervical cancer development. The concurrent methylation of multiple genes in cancers and in subsets of precancerous lesions suggests the presence of a driver of methylation phenotype in cervical carcinogenesis. Further validation of these new genes as biomarkers for cervical cancer screening in a larger population-based study is warranted. What's New? The identification of novel genes that are hypermethylated in cancer and precancerous lesions is needed in order to achieve a better sensitivity and specificity in cervical cancer screening. Using a genome-wide approach, here the authors identified 14 genes that were frequently hypermethylated in CIN3+ and might thus become useful biomarkers in future molecular cervical cancer screening. A bioinformatics function analysis revealed that five of these genes were potentially implicated in β-catenin signaling, suggesting the epigenetic dysregulation of Wnt signaling during cervical cancer development. The concurrent hypermethylation of multiple genes also suggests the involvement of a CpG island methylator phenotype.
机译:在癌症检测中使用DNA甲基化生物标记物是临床测试的潜在方向。有人提出了一些甲基化基因用于宫颈癌的检测。但是,需要更可靠的甲基化标记。为了在发现阶段识别新的高甲基化基因,我们使用甲基化微珠阵列比较了正常宫颈上皮的DNA池(n = 19)和宫颈癌组织的DNA池(n = 38)之间的甲基化组。我们将差异甲基化基因与公共基因表达数据库整合在一起,产生了91个候选基因。根据细胞系中去甲基化处理后的基因表达,我们确认了61个基因有待进一步验证。在验证阶段,使用定量的MSP和亚硫酸氢盐焦磷酸测序来检查一组独立的临床样品中的甲基化水平。在CIN3 +病变中,包括ADRA1D,AJAP1,COL6A2,EDN3,EPO,HS3ST2,MAGI2,POU4F3,PTGDR,SOX8,SOX17,ST6GAL2,SYT9和ZNF614在内的14个基因被显着超甲基化。 POU4F3检测CIN3 +病变的敏感性,特异性和准确性分别为0.88、0.82和0.85。生物信息学功能分析表明,AJAP1,EDN3,EPO,MAGI2和SOX17可能与β-catenin信号传导有关,表明在宫颈癌发展过程中该信号传导通路的表观遗传失调。癌症和癌前病变亚组中多个基因的同时甲基化提示宫颈癌发生中存在甲基化表型的驱动因子。这些新基因作为用于子宫颈癌筛查的生物标记物,需要在更大的基于人群的研究中进一步验证。什么是新的?为了在宫颈癌筛查中获得更好的敏感性和特异性,需要鉴定在癌症和癌前病变中甲基化过度的新基因。使用全基因组方法,作者在这里鉴定了14个在CIN3 +中经常发生超甲基化的基因,因此有可能成为未来分子宫颈癌筛查的有用生物标记。生物信息学功能分析表明,这些基因中有五个可能与β-catenin信号传导有关,表明子宫颈癌发展过程中Wnt信号的表观遗传失调。多个基因的同时超甲基化还表明CpG岛甲基化者表型的参与。

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