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A Genome-Wide Association Meta-Analysis of Circulating Sex Hormone–Binding Globulin Reveals Multiple Loci Implicated in Sex Steroid Hormone Regulation

机译:循环性激素结合球蛋白的全基因组关联荟萃分析揭示了涉及性类固醇激素调节的多个基因座。

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摘要

Sex hormone-binding globulin (SHBG) is a glycoprotein responsible for the transport and biologic availability of sex steroid hormones, primarily testosterone and estradiol. SHBG has been associated with chronic diseases including type 2 diabetes (T2D) and with hormone-sensitive cancers such as breast and prostate cancer. We performed a genome-wide association study (GWAS) meta-analysis of 21,791 individuals from 10 epidemiologic studies and validated these findings in 7,046 individuals in an additional six studies. We identified twelve genomic regions (SNPs) associated with circulating SHBG concentrations. Loci near the identified SNPs included SHBG (rs12150660, 17p13.1, p = 1.8×10−106), PRMT6 (rs17496332, 1p13.3, p = 1.4×10−11), GCKR (rs780093, 2p23.3, p = 2.2×10−16), ZBTB10 (rs440837, 8q21.13, p = 3.4×10−09), JMJD1C (rs7910927, 10q21.3, p = 6.1×10−35), SLCO1B1 (rs4149056, 12p12.1, p = 1.9×10−08), NR2F2 (rs8023580, 15q26.2, p = 8.3×10−12), ZNF652 (rs2411984, 17q21.32, p = 3.5×10−14), TDGF3 (rs1573036, Xq22.3, p = 4.1×10−14), LHCGR (rs10454142, 2p16.3, p = 1.3×10−07), BAIAP2L1 (rs3779195, 7q21.3, p = 2.7×10−08), and UGT2B15 (rs293428, 4q13.2, p = 5.5×10−06). These genes encompass multiple biologic pathways, including hepatic function, lipid metabolism, carbohydrate metabolism and T2D, androgen and estrogen receptor function, epigenetic effects, and the biology of sex steroid hormone-responsive cancers including breast and prostate cancer. We found evidence of sex-differentiated genetic influences on SHBG. In a sex-specific GWAS, the loci 4q13.2-UGT2B15 was significant in men only (men p = 2.5×10−08, women p = 0.66, heterogeneity p = 0.003). Additionally, three loci showed strong sex-differentiated effects: 17p13.1-SHBG and Xq22.3-TDGF3 were stronger in men, whereas 8q21.12-ZBTB10 was stronger in women. Conditional analyses identified additional signals at the SHBG gene that together almost double the proportion of variance explained at the locus. Using an independent study of 1,129 individuals, all SNPs identified in the overall or sex-differentiated or conditional analyses explained ∼15.6% and ∼8.4% of the genetic variation of SHBG concentrations in men and women, respectively. The evidence for sex-differentiated effects and allelic heterogeneity highlight the importance of considering these features when estimating complex trait variance.
机译:性激素结合球蛋白(SHBG)是一种糖蛋白,负责性甾体激素(主要是睾丸激素和雌二醇)的运输和生物利用度。 SHBG与包括2型糖尿病(T2D)在内的慢性疾病以及激素敏感性癌症(例如乳腺癌和前列腺癌)相关。我们对来自10个流行病学研究的21,791名个体进行了全基因组关联研究(GWAS)荟萃分析,并在另外6项研究中对7,046名个体进行了验证。我们确定了与循环SHBG浓度相关的十二个基因组区域(SNP)。识别出的SNP附近的基因座包括SHBG(rs12150660,17p13.1,p = 1.8×10 −106 ),PRMT6(rs17496332,1p13.3,p = 1.4×10 −11 −16 ),ZBTB10(rs440837、8q21.13,p = 3.4×10 −09 ),JMJD1C( rs7910927 10q21.3 ,p = 6.1 × 10 −35 ), SLCO1B1 rs4149056 12p12.1 ,p = 1.9 × 10 −08 ), NR2F2 rs8023580 15q26.2 ,p = 8.3 × 10 −12 ), ZNF652 rs2411984 17q21.32 ,p = 3.5 × 10 −14 ), TDGF3 rs1573036 ,< em> Xq22.3 ,p = 4.1 × 10 −14 ), LHCGR (< em> rs10454142 2p16.3 ,p = 1.3 × 10 −07 ),< em> BAIAP2L1 rs3779195 7q21.3 ,p = 2.7 × 10 −08 )和 UGT2B15 rs293428 4q13.2 , p = 5.5 × 10 −06 )。这些基因涵盖多种生物学途径,包括肝功能,脂质代谢,碳水化合物代谢和T2D,雄激素和雌激素受体功能,表观遗传学作用以及性类固醇激素反应性癌症(包括乳腺癌和前列腺癌)的生物学特性。我们发现性别差异遗传因素对SHBG的证据。在性别特定的GWAS中,基因座4q13.2- UGT2B15 仅在男性中显着(男性p = 2.5×10 −08 ,女性p = 0.66,异质性p = 0.003)。此外,三个基因座显示出强烈的性别差异作用:男性中17p13.1- SHBG 和Xq22.3- TDGF3 较强,而8q21.12- ZBTB10 在女性中更强。条件分析确定了 SHBG 基因上的其他信号,这些信号加在一起几乎使该位点解释的方差比例翻了一番。通过对1129名个体的独立研究,在整体或性别差异或条件分析中鉴定出的所有SNP分别解释了男性和女性SHBG浓度遗传变异的约15.6%和8.4%。性别差异效应和等位基因异质性的证据凸显了估算复杂性状方差时考虑这些特征的重要性。

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