Brief Bioinform. 2014 Nov;15(6):1028-43. doi: 10.1093/bib/bbt076. Epub 2013 Oct 30.
Gene expression is modulated by multiple mechanisms, including genetic and/or epigenetic regulation, and associated with the processes of cellular differentiation and morphogenesis. Single nucleotide polymorphisms (SNPs) and DNA methylation play important roles in regulating gene expression. In this study, we focused on revealing the relationship between SNPs, DNA methylation and gene expression in two human populations genome-wide through proposing four regulation patterns and developed maximum likelihood estimate models. Using simulated data with different correlation coefficients between any two traits, the power of our approach showed a favourable performance and relative stability. In all, 6733 SNP-CpG-gene pairs including 957 genes were obtained in Northern European ancestry (CEU) population. As the results showed, SNPs and DNA methylation had approximately the same effect on expression regulation of 49% genes, which was termed cooperative/antagonistic regulation pattern. Less than 30% of genes are controlled only by one of the factors (SNP/DNA methylation). The others showed SNPs that affect methylation have no consequent effects or crosstalk regulation on gene expression. Similar result was shown in Yourba (YRI) population. Specific genes were inferred using the different mechanisms of gene regulation involved in complex diseases by combining literature. This approach provides a method to comprehensively assess regulation patterns of gene expression in the whole genome.
基因表达受多种机制调控,包括遗传和/或表观遗传调控,并与细胞分化和形态发生过程相关。单核苷酸多态性 (SNP) 和 DNA 甲基化在调节基因表达中起着重要作用。在这项研究中,我们通过提出四种调控模式并开发最大似然估计模型,专注于在两个人类群体中全面揭示 SNP、DNA 甲基化和基因表达之间的关系。使用具有任何两个性状之间不同相关系数的模拟数据,我们方法的功效表现出良好的性能和相对稳定性。在所有,957 个基因中包含了 6733 个 SNP-CpG-基因对在北欧血统 (CEU) 人群中被获得。结果表明,SNP 和 DNA 甲基化对 49%基因的表达调控具有大致相同的影响,这被称为协同/拮抗调控模式。不到 30%的基因仅受其中一个因素 (SNP/DNA 甲基化) 的控制。其余的则表明影响甲基化的 SNP 对基因表达没有后续影响或相互作用调节。在 Yoruba (YRI) 人群中也显示出类似的结果。通过结合文献,使用涉及复杂疾病的基因调控的不同机制推断出特定基因。这种方法提供了一种全面评估全基因组基因表达调控模式的方法。