Zhang Qiang, Wang Wenying, Xu Weidong, Du` Mulong, Ma Gaoxiang, Liu Hanting, Chu Haiyan, Tong N A, Wang Meilin, Shao Jianfeng, Zhang Zhengdong, Yuan Lin, Qian Jing
Department of Environmental Genomics, Jiangsu Key Laboratory of Cancer Biomarkers, Prevention and Treatment, Collaborative Innovation Center For Cancer Personalized Medicine, Nanjing Medical University, Nanjing, P.R. China.
Department of Genetic Toxicology, The Key Laboratory of Modern Toxicology of Ministry of Education, School of Public Health, Nanjing Medical University, Nanjing, P.R. China.
Cancer Genomics Proteomics. 2018 Jan-Feb;15(1):67-72. doi: 10.21873/cgp.20066.
Key genes related to cell cycle and apoptosis pathways play critical roles in bladder cancer. Single nucleotide polymorphisms (SNPs) in the 3'-untranslated regions (3'-UTR) of genes may impact microRNA (miRNA)-messenger RNA (mRNA) binding capacity and alter gene expression to contribute to the susceptibility of cancers. However, an association of genetic variations in cell cycle and apoptosis pathways with bladder cancer risk, has not been reported.
We selected SNPs in the 3'-UTR of cell cycle and apoptosis pathways genes and genotyped them with a case-control study consisting of 578 bladder cancer patients and 1,006 cancer-free subjects. Dual luciferase reporter gene assay was performed to validate the biological function of important SNPs.
We found that 5 SNPs might change the binding ability of miRNA to their target genes, among which PPP3CC rs7431 A>G located in the 3'-untranslated regions with the minimum p-value (p=5.75×10). Analysis revealed that the rs7431 disrupted miR-212 and miR-132 targeting sites. Logistic regression revealed a significantly decreased risk of bladder cancer associated with the PPP3CC rs7431 A>G polymorphism with an odds ratio (OR) of 0.76 [95% confidence interval (CI)=0.66-0.89, p=5.75×10]. Luciferase report assay showed that both miR-212 and miR-132 could lead to significantly increased PPP3CC expression levels in the construct with the G allele compared to the A allele.
PPP3CC rs7431 may alter miRNA binding ability of miR-212 and miR-132, and thus decrease bladder cancer risk.
与细胞周期和凋亡途径相关的关键基因在膀胱癌中起着至关重要的作用。基因3'-非翻译区(3'-UTR)中的单核苷酸多态性(SNP)可能会影响微小RNA(miRNA)与信使核糖核酸(mRNA)的结合能力,并改变基因表达,从而导致癌症易感性。然而,尚未有关于细胞周期和凋亡途径中的基因变异与膀胱癌风险之间关联的报道。
我们选择了细胞周期和凋亡途径基因3'-UTR中的SNP,并通过一项包含578例膀胱癌患者和1006例无癌受试者的病例对照研究对其进行基因分型。进行双荧光素酶报告基因测定以验证重要SNP的生物学功能。
我们发现5个SNP可能会改变miRNA与其靶基因的结合能力,其中位于3'-非翻译区的PPP3CC rs7431 A>G的p值最小(p = 5.75×10)。分析显示rs7431破坏了miR-212和miR-132的靶向位点。逻辑回归分析显示,PPP3CC rs7431 A>G多态性与膀胱癌风险显著降低相关,比值比(OR)为0.76 [95%置信区间(CI)= 0.66 - 0.89,p = 5.75×10]。荧光素酶报告测定表明,与A等位基因相比,miR-212和miR-132均可导致具有G等位基因的构建体中PPP3CC表达水平显著升高。
PPP3CC rs7431可能会改变miR-212和miR-132的miRNA结合能力,从而降低膀胱癌风险。