Asan Institute for Life Sciences, University of Ulsan College of Medicine, Seoul, Republic of Korea.
Gene. 2012 Feb 10;493(2):211-8. doi: 10.1016/j.gene.2011.11.058. Epub 2011 Dec 8.
Polymorphism and variations in gene expression provide the genetic basis for human variation. Allelic variation of gene expression, in particular, may play a crucial role in phenotypic variation and disease susceptibility. To identify genes with allelic expression in human cells, we genotyped genomic DNA and cDNA isolated from 31 immortalized B cell lines from three Centre d'Etude du Polymorphisme Humain (CEPH) families using high-density single-nucleotide polymorphism (SNP) chips containing 13,900 exonic SNPs. We identified seven SNPs in five genes with monoallelic expression, 146 SNPs in 125 genes with allelic imbalance in expression with preferentially higher expression of one allele in a heterozygous individual. The monoallelically expressed genes (ERAP2, MDGA1, LOC644422, SDCCAG3P1 and CLTCL1) were regulated by cis-acting, non-imprinted differential allelic control. In addition, all monoallelic gene expression patterns and allelic imbalances in gene expression in B cells were transmitted from parents to offspring in the pedigree, indicating genetic transmission of allelic gene expression. Furthermore, frequent allele substitution, probably due to RNA editing, was also observed in 21 genes in 23 SNPs as well as in 48 SNPs located in regions containing no known genes. In this study, we demonstrated that allelic gene expression is frequently observed in human B cells, and SNP chips are very useful tools for detecting allelic gene expression. Overall, our data provide a valuable framework for better understanding allelic gene expression in human B cells.
多态性和基因表达的变异为人类变异提供了遗传基础。特别是基因表达的等位基因变异,可能在表型变异和疾病易感性中发挥关键作用。为了鉴定人细胞中具有等位基因表达的基因,我们使用包含 13900 个外显子 SNPs 的高密度单核苷酸多态性(SNP)芯片,对来自三个 Centre d'Etude du Polymorphisme Humain(CEPH)家族的 31 个人永生 B 细胞系的基因组 DNA 和 cDNA 进行了基因分型。我们在五个具有单等位基因表达的基因中鉴定出七个 SNP,在 125 个具有表达等位基因失衡的基因中鉴定出 146 个 SNP,在杂合个体中,一个等位基因的表达优先升高。单等位基因表达的基因(ERAP2、MDGA1、LOC644422、SDCCAG3P1 和 CLTCL1)受顺式作用、非印迹性差异等位基因控制。此外,B 细胞中单等位基因表达模式和基因表达的等位基因失衡在系谱中从父母传递给后代,表明等位基因表达的遗传传递。此外,在 23 个 SNP 中的 21 个基因和 48 个 SNP 中也观察到频繁的等位基因替换,可能是由于 RNA 编辑所致,这些 SNP 位于无已知基因的区域。在这项研究中,我们证明了等位基因表达在人 B 细胞中经常发生,SNP 芯片是检测等位基因表达的非常有用的工具。总的来说,我们的数据为更好地理解人 B 细胞中的等位基因表达提供了有价值的框架。