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人类MHC单倍型中的独特等位基因表达数量性状位点簇

Unique Allelic eQTL Clusters in Human MHC Haplotypes.

作者信息

Lam Tze Hau, Shen Meixin, Tay Matthew Zirui, Ren Ee Chee

机构信息

Singapore Immunology Network, A*STAR, Singapore 138648.

Department of Molecular Genetics and Microbiology, Duke University, Durham, North Carolina 27710.

出版信息

G3 (Bethesda). 2017 Aug 7;7(8):2595-2604. doi: 10.1534/g3.117.043828.

Abstract

The control of gene regulation within the major histocompatibility complex (MHC) remains poorly understood, despite several expression quantitative trait loci (eQTL) studies revealing an association of MHC gene expression with independent tag-single nucleotide polymorphisms (SNPs). MHC haplotype variation may exert a greater effect on gene expression phenotype than specific single variants. To explore the effect of MHC haplotype sequence diversity on gene expression phenotypes across the MHC, we examined the MHC transcriptomic landscape at haplotype-specific resolution for three prominent MHC haplotypes (A2-B46-DR9, A33-B58-DR3, and A1-B8-DR3) derived from MHC-homozygous B-lymphoblastoid cell lines (B-LCLs). We demonstrate that MHC-wide gene expression patterns are dictated by underlying haplotypes, and identify 36 differentially expressed genes. By mapping these haplotype sequence variations to known eQTL, we provide evidence that unique allelic combinations of eQTL, embedded within haplotypes, are correlated with the level of expression of 17 genes. Interestingly, the influence of haplotype sequence on gene expression is not homogenous across the MHC. We show that haplotype sequence polymorphisms within or proximate to HLA-A, HLA-C, C4A, and HLA-DRB regions exert haplotype-specific gene regulatory effects, whereas the expression of genes in other parts of the MHC region are not affected by the haplotype sequence. Overall, we demonstrate that MHC haplotype sequence diversity can impact phenotypic outcome via the alteration of transcriptional variability, indicating that a haplotype-based approach is fundamental for the assessment of trait associations in the MHC.

摘要

尽管多项表达定量性状基因座(eQTL)研究揭示了主要组织相容性复合体(MHC)基因表达与独立标签单核苷酸多态性(SNP)之间的关联,但对MHC内基因调控的控制仍知之甚少。MHC单倍型变异对基因表达表型的影响可能比特定的单个变异更大。为了探究MHC单倍型序列多样性对整个MHC基因表达表型的影响,我们以单倍型特异性分辨率研究了源自MHC纯合B淋巴母细胞系(B-LCL)的三种突出MHC单倍型(A2-B46-DR9、A33-B58-DR3和A1-B8-DR3)的MHC转录组图谱。我们证明,全MHC范围的基因表达模式由潜在单倍型决定,并鉴定出36个差异表达基因。通过将这些单倍型序列变异映射到已知的eQTL,我们提供了证据表明,嵌入单倍型内的eQTL的独特等位基因组合与17个基因的表达水平相关。有趣的是,单倍型序列对基因表达的影响在整个MHC中并不均匀。我们表明,HLA-A、HLA-C、C4A和HLA-DRB区域内或附近的单倍型序列多态性发挥单倍型特异性基因调控作用,而MHC区域其他部分的基因表达不受单倍型序列影响。总体而言,我们证明MHC单倍型序列多样性可通过转录变异性的改变影响表型结果,表明基于单倍型的方法对于评估MHC中的性状关联至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e50b/5555465/874da0dcfd37/2595f1.jpg

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