Nielson Carrie M, Liu Ching-Ti, Smith Albert V, Ackert-Bicknell Cheryl L, Reppe Sjur, Jakobsdottir Johanna, Wassel Christina, Register Thomas C, Oei Ling, Alonso Nerea, Oei Edwin H, Parimi Neeta, Samelson Elizabeth J, Nalls Mike A, Zmuda Joseph, Lang Thomas, Bouxsein Mary, Latourelle Jeanne, Claussnitzer Melina, Siggeirsdottir Kristin, Srikanth Priya, Lorentzen Erik, Vandenput Liesbeth, Langefeld Carl, Raffield Laura, Terry Greg, Cox Amanda J, Allison Matthew A, Criqui Michael H, Bowden Don, Ikram M Arfan, Mellström Dan, Karlsson Magnus K, Carr John, Budoff Matthew, Phillips Caroline, Cupples L Adrienne, Chou Wen-Chi, Myers Richard H, Ralston Stuart H, Gautvik Kaare M, Cawthon Peggy M, Cummings Steven, Karasik David, Rivadeneira Fernando, Gudnason Vilmundur, Orwoll Eric S, Harris Tamara B, Ohlsson Claes, Kiel Douglas P, Hsu Yi-Hsiang
School of Public Health, Oregon Health & Science University, Portland, OR, USA.
Department of Biostatistics, Boston University School of Public Health, Boston, MA, USA.
J Bone Miner Res. 2016 Dec;31(12):2085-2097. doi: 10.1002/jbmr.2913. Epub 2016 Sep 6.
Genome-wide association studies (GWASs) have revealed numerous loci for areal bone mineral density (aBMD). We completed the first GWAS meta-analysis (n = 15,275) of lumbar spine volumetric BMD (vBMD) measured by quantitative computed tomography (QCT), allowing for examination of the trabecular bone compartment. SNPs that were significantly associated with vBMD were also examined in two GWAS meta-analyses to determine associations with morphometric vertebral fracture (n = 21,701) and clinical vertebral fracture (n = 5893). Expression quantitative trait locus (eQTL) analyses of iliac crest biopsies were performed in 84 postmenopausal women, and murine osteoblast expression of genes implicated by eQTL or by proximity to vBMD-associated SNPs was examined. We identified significant vBMD associations with five loci, including: 1p36.12, containing WNT4 and ZBTB40; 8q24, containing TNFRSF11B; and 13q14, containing AKAP11 and TNFSF11. Two loci (5p13 and 1p36.12) also contained associations with radiographic and clinical vertebral fracture, respectively. In 5p13, rs2468531 (minor allele frequency [MAF] = 3%) was associated with higher vBMD (β = 0.22, p = 1.9 × 10 ) and decreased risk of radiographic vertebral fracture (odds ratio [OR] = 0.75; false discovery rate [FDR] p = 0.01). In 1p36.12, rs12742784 (MAF = 21%) was associated with higher vBMD (β = 0.09, p = 1.2 × 10 ) and decreased risk of clinical vertebral fracture (OR = 0.82; FDR p = 7.4 × 10 ). Both SNPs are noncoding and were associated with increased mRNA expression levels in human bone biopsies: rs2468531 with SLC1A3 (β = 0.28, FDR p = 0.01, involved in glutamate signaling and osteogenic response to mechanical loading) and rs12742784 with EPHB2 (β = 0.12, FDR p = 1.7 × 10 , functions in bone-related ephrin signaling). Both genes are expressed in murine osteoblasts. This is the first study to link SLC1A3 and EPHB2 to clinically relevant vertebral osteoporosis phenotypes. These results may help elucidate vertebral bone biology and novel approaches to reducing vertebral fracture incidence. © 2016 American Society for Bone and Mineral Research.
全基因组关联研究(GWAS)已经揭示了许多与面骨矿物质密度(aBMD)相关的基因座。我们完成了第一项关于通过定量计算机断层扫描(QCT)测量的腰椎体积骨密度(vBMD)的GWAS荟萃分析(n = 15275),从而能够对小梁骨部分进行检查。在两项GWAS荟萃分析中,我们还对与vBMD显著相关的单核苷酸多态性(SNP)进行了检查,以确定其与形态计量学椎体骨折(n = 21701)和临床椎体骨折(n = 5893)的关联。对84名绝经后女性的髂嵴活检进行了表达定量性状基因座(eQTL)分析,并检测了eQTL或与vBMD相关SNP附近的基因在小鼠成骨细胞中的表达。我们确定了与五个基因座的显著vBMD关联,包括:1p36.12,包含WNT4和ZBTB40;8q24,包含TNFRSF11B;以及13q14,包含AKAP11和TNFSF11。两个基因座(5p13和1p36.12)分别也与影像学和临床椎体骨折相关。在5p13中,rs2468531(次要等位基因频率[MAF]=3%)与较高vBMD相关(β=0.22,p = 1.9×10 ),并降低了影像学椎体骨折风险(优势比[OR]=0.75;错误发现率[FDR] p = 0.01)。在1p36.12中,rs12742784(MAF = 21%)与较高vBMD相关(β=0.09,p = 1.2×10 ),并降低了临床椎体骨折风险(OR = 0.82;FDR p = 7.4×10 )。这两个SNP均为非编码型,并且与人骨活检中mRNA表达水平升高相关:rs2468531与SLC1A3相关(β=0.28,FDR p = 0.01,参与谷氨酸信号传导和成骨细胞对机械负荷的反应),rs12742784与EPHB2相关(β=0.12,FDR p = 1.7×10 ,在骨相关的 Ephrin信号传导中起作用)。这两个基因均在小鼠成骨细胞中表达。这是第一项将SLC1A3和EPHB2与临床相关的椎体骨质疏松症表型联系起来的研究。这些结果可能有助于阐明椎体骨生物学以及降低椎体骨折发生率的新方法。©2016美国骨与矿物质研究学会。