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全X染色体关联研究确定了空腹胰岛素和身高的基因座以及不完全剂量补偿的证据。

Chromosome X-wide association study identifies Loci for fasting insulin and height and evidence for incomplete dosage compensation.

作者信息

Tukiainen Taru, Pirinen Matti, Sarin Antti-Pekka, Ladenvall Claes, Kettunen Johannes, Lehtimäki Terho, Lokki Marja-Liisa, Perola Markus, Sinisalo Juha, Vlachopoulou Efthymia, Eriksson Johan G, Groop Leif, Jula Antti, Järvelin Marjo-Riitta, Raitakari Olli T, Salomaa Veikko, Ripatti Samuli

机构信息

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland ; Analytic and Translational Genetics Unit, Massachusetts General Hospital, Boston, Massachusetts, United States of America ; Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, Massachusetts, United States of America.

Institute for Molecular Medicine Finland (FIMM), University of Helsinki, Helsinki, Finland.

出版信息

PLoS Genet. 2014 Feb 6;10(2):e1004127. doi: 10.1371/journal.pgen.1004127. eCollection 2014 Feb.

Abstract

The X chromosome (chrX) represents one potential source for the "missing heritability" for complex phenotypes, which thus far has remained underanalyzed in genome-wide association studies (GWAS). Here we demonstrate the benefits of including chrX in GWAS by assessing the contribution of 404,862 chrX SNPs to levels of twelve commonly studied cardiometabolic and anthropometric traits in 19,697 Finnish and Swedish individuals with replication data on 5,032 additional Finns. By using a linear mixed model, we estimate that on average 2.6% of the additive genetic variance in these twelve traits is attributable to chrX, this being in proportion to the number of SNPs in the chromosome. In a chrX-wide association analysis, we identify three novel loci: two for height (rs182838724 near FGF16/ATRX/MAGT1, joint P-value = 2.71×10(-9), and rs1751138 near ITM2A, P-value = 3.03×10(-10)) and one for fasting insulin (rs139163435 in Xq23, P-value = 5.18×10(-9)). Further, we find that effect sizes for variants near ITM2A, a gene implicated in cartilage development, show evidence for a lack of dosage compensation. This observation is further supported by a sex-difference in ITM2A expression in whole blood (P-value = 0.00251), and is also in agreement with a previous report showing ITM2A escapes from X chromosome inactivation (XCI) in the majority of women. Hence, our results show one of the first links between phenotypic variation in a population sample and an XCI-escaping locus and pinpoint ITM2A as a potential contributor to the sexual dimorphism in height. In conclusion, our study provides a clear motivation for including chrX in large-scale genetic studies of complex diseases and traits.

摘要

X染色体(chrX)是复杂表型“缺失遗传力”的一个潜在来源,在全基因组关联研究(GWAS)中,该染色体至今仍未得到充分分析。在此,我们通过评估404,862个chrX单核苷酸多态性(SNP)对19,697名芬兰和瑞典个体中12种常见的心脏代谢和人体测量性状水平的贡献,并在另外5032名芬兰人身上进行复制数据验证,证明了在GWAS中纳入chrX的益处。通过使用线性混合模型,我们估计这12种性状中平均2.6%的加性遗传方差可归因于chrX,这与该染色体上SNP的数量成比例。在一项全chrX关联分析中,我们确定了三个新位点:两个与身高有关(FGF16/ATRX/MAGT1附近的rs182838724,联合P值 = 2.71×10^(-9);ITM2A附近的rs1751138,P值 = 3.03×10^(-10)),一个与空腹胰岛素有关(Xq23中的rs139163435,P值 = 5.18×10^(-9))。此外,我们发现与软骨发育相关基因ITM2A附近变异的效应大小显示出缺乏剂量补偿的证据。全血中ITM2A表达的性别差异(P值 = 0.00251)进一步支持了这一观察结果,并且这也与之前一份报告一致,该报告显示大多数女性中ITM2A逃避了X染色体失活(XCI)。因此,我们的结果显示了群体样本中的表型变异与一个逃避XCI的位点之间的首批联系之一,并指出ITM2A是身高性别差异的一个潜在因素。总之,我们的研究为在复杂疾病和性状的大规模遗传研究中纳入chrX提供了明确的动机。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2ab/3916240/ff8184f76877/pgen.1004127.g001.jpg

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