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跨基因表达数量性状位点(eQTLs)揭示了与复杂表型相关的独立遗传变异与中间基因相关,HLA 发挥主要作用。

Trans-eQTLs reveal that independent genetic variants associated with a complex phenotype converge on intermediate genes, with a major role for the HLA.

机构信息

Department of Genetics, University Medical Center Groningen and University of Groningen, Groningen, The Netherlands.

出版信息

PLoS Genet. 2011 Aug;7(8):e1002197. doi: 10.1371/journal.pgen.1002197. Epub 2011 Aug 4.

Abstract

For many complex traits, genetic variants have been found associated. However, it is still mostly unclear through which downstream mechanism these variants cause these phenotypes. Knowledge of these intermediate steps is crucial to understand pathogenesis, while also providing leads for potential pharmacological intervention. Here we relied upon natural human genetic variation to identify effects of these variants on trans-gene expression (expression quantitative trait locus mapping, eQTL) in whole peripheral blood from 1,469 unrelated individuals. We looked at 1,167 published trait- or disease-associated SNPs and observed trans-eQTL effects on 113 different genes, of which we replicated 46 in monocytes of 1,490 different individuals and 18 in a smaller dataset that comprised subcutaneous adipose, visceral adipose, liver tissue, and muscle tissue. HLA single-nucleotide polymorphisms (SNPs) were 10-fold enriched for trans-eQTLs: 48% of the trans-acting SNPs map within the HLA, including ulcerative colitis susceptibility variants that affect plausible candidate genes AOAH and TRBV18 in trans. We identified 18 pairs of unlinked SNPs associated with the same phenotype and affecting expression of the same trans-gene (21 times more than expected, P<10(-16)). This was particularly pronounced for mean platelet volume (MPV): Two independent SNPs significantly affect the well-known blood coagulation genes GP9 and F13A1 but also C19orf33, SAMD14, VCL, and GNG11. Several of these SNPs have a substantially higher effect on the downstream trans-genes than on the eventual phenotypes, supporting the concept that the effects of these SNPs on expression seems to be much less multifactorial. Therefore, these trans-eQTLs could well represent some of the intermediate genes that connect genetic variants with their eventual complex phenotypic outcomes.

摘要

对于许多复杂性状,已经发现了与之相关的遗传变异。然而,这些变异通过哪些下游机制导致这些表型仍然大多不清楚。了解这些中间步骤对于理解发病机制至关重要,同时也为潜在的药物干预提供了线索。在这里,我们依赖于自然的人类遗传变异,来鉴定这些变异对来自 1469 个无血缘关系个体的全血外周中转基因表达(表达数量性状基因座作图,eQTL)的影响。我们观察了 1167 个已发表的与性状或疾病相关的 SNP,并观察到 113 个不同基因的跨基因表达数量性状基因座效应,其中我们在来自 1490 个不同个体的单核细胞中复制了 46 个,在包含皮下脂肪、内脏脂肪、肝组织和肌肉组织的较小数据集上复制了 18 个。HLA 单核苷酸多态性(SNP)在跨基因表达数量性状基因座中富集了 10 倍:48%的跨作用 SNP 位于 HLA 内,包括溃疡性结肠炎易感性变异,这些变异在转录中影响合理的候选基因 AOAH 和 TRBV18。我们鉴定了 18 对与相同表型相关且影响相同跨基因表达的非连锁 SNP(比预期多 21 倍,P<10(-16))。这在平均血小板体积(MPV)中尤为明显:两个独立的 SNP 显著影响众所周知的血液凝固基因 GP9 和 F13A1,但也影响 C19orf33、SAMD14、VCL 和 GNG11。这些 SNP 中的几个对下游跨基因的影响明显高于对最终表型的影响,这支持了这样的概念,即这些 SNP 对表达的影响似乎要少得多,受多种因素影响。因此,这些跨基因表达数量性状基因座很可能代表了一些连接遗传变异与其最终复杂表型结果的中间基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25ba/3150446/626875defed7/pgen.1002197.g001.jpg

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