Li Mulin Jun, Zhang Jian, Liang Qian, Xuan Chenghao, Wu Jiexing, Jiang Peng, Li Wei, Zhu Yun, Wang Panwen, Fernandez Daniel, Shen Yujun, Chen Yiwen, Kocher Jean-Pierre A, Yu Ying, Sham Pak Chung, Wang Junwen, Liu Jun S, Liu X Shirley
Department of pharmacology, School of Basic Medical Sciences, Tianjin Medical University, Tianjin 300070, China.
Department of Statistics, Harvard University, Cambridge, MA 02138, USA.
Nucleic Acids Res. 2017 Jun 2;45(10):5653-5665. doi: 10.1093/nar/gkx331.
Competing endogenous RNAs (ceRNAs) are RNA molecules that sequester shared microRNAs (miRNAs) thereby affecting the expression of other targets of the miRNAs. Whether genetic variants in ceRNA can affect its biological function and disease development is still an open question. Here we identified a large number of genetic variants that are associated with ceRNA's function using Geuvaids RNA-seq data for 462 individuals from the 1000 Genomes Project. We call these loci competing endogenous RNA expression quantitative trait loci or 'cerQTL', and found that a large number of them were unexplored in conventional eQTL mapping. We identified many cerQTLs that have undergone recent positive selection in different human populations, and showed that single nucleotide polymorphisms in gene 3΄UTRs at the miRNA seed binding regions can simultaneously regulate gene expression changes in both cis and trans by the ceRNA mechanism. We also discovered that cerQTLs are significantly enriched in traits/diseases associated variants reported from genome-wide association studies in the miRNA binding sites, suggesting that disease susceptibilities could be attributed to ceRNA regulation. Further in vitro functional experiments demonstrated that a cerQTL rs11540855 can regulate ceRNA function. These results provide a comprehensive catalog of functional non-coding regulatory variants that may be responsible for ceRNA crosstalk at the post-transcriptional level.
竞争性内源RNA(ceRNA)是一类RNA分子,它们通过结合共同的微小RNA(miRNA)来影响miRNA其他靶标的表达。ceRNA中的基因变异是否会影响其生物学功能和疾病发展仍是一个悬而未决的问题。在此,我们利用千人基因组计划中462名个体的Geuvaids RNA测序数据,鉴定出大量与ceRNA功能相关的基因变异。我们将这些位点称为竞争性内源RNA表达数量性状位点或“cerQTL”,并发现其中许多位点在传统的表达数量性状位点(eQTL)定位中未被探索。我们鉴定出许多在不同人类群体中经历了近期正选择的cerQTL,并表明miRNA种子结合区域基因3′非翻译区(3΄UTR)中的单核苷酸多态性可通过ceRNA机制同时调节顺式和反式基因表达变化。我们还发现,cerQTL在全基因组关联研究报告的miRNA结合位点的性状/疾病相关变异中显著富集,这表明疾病易感性可能归因于ceRNA调控。进一步的体外功能实验表明,cerQTL rs11540855可调节ceRNA功能。这些结果提供了一份功能性非编码调控变异的综合目录,这些变异可能在转录后水平上介导ceRNA的相互作用。