首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Genetic variation in the RANKL/RANK/OPG signaling pathway is associated with bone turnover and bone mineral density in men.
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Genetic variation in the RANKL/RANK/OPG signaling pathway is associated with bone turnover and bone mineral density in men.

机译:RANKL / RANK / OPG信号通路中的遗传变异与男性的骨转换和骨矿物质密度有关。

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The aim of this study was to determine if single-nucleotide polymorphisms (SNPs) in RANKL, RANK, and OPG influence bone turnover and bone mineral density (BMD) in men. Pairwise tag SNPs (r(2) > or = 0.8) were selected for RANKL, RANK, and OPG and their 10-kb flanking regions. Selected tag SNPs plus five SNPs near RANKL and OPG, associated with BMD in published genome-wide association studies (GWAS), were genotyped in 2653 men aged 40 to 79 years of age recruited for participation in a population-based study of male aging, the European Male Ageing Study (EMAS). N-terminal propeptide of type I procollagen (PINP) and C-terminal cross-linked telopeptide of type I collagen (CTX-I) serum levels were measured in all men. BMD at the calcaneus was estimated by quantitative ultrasound (QUS) in all men. Lumbar spine and total-hip areal BMD (BMD(a)) was measured by dual-energy X-ray absorptiometry (DXA) in a subsample of 620 men. Multiple OPG, RANK, and RANKL SNPs were associated with bone turnover markers. We also identified a number of SNPs associated with BMD, including rs2073618 in OPG and rs9594759 near RANKL. The minor allele of rs2073618 (C) was associated with higher levels of both PINP (beta = 1.83, p = .004) and CTX-I (beta = 17.59, p = 4.74 x 10(-4)), and lower lumbar spine BMD(a) (beta = -0.02, p = .026). The minor allele of rs9594759 (C) was associated with lower PINP (beta = -1.84, p = .003) and CTX-I (beta = -27.02, p = 6.06 x 10(-8)) and higher ultrasound BMD at the calcaneus (beta = 0.01, p = .037). Our findings suggest that genetic variation in the RANKL/RANK/OPG signaling pathway influences bone turnover and BMD in European men.
机译:这项研究的目的是确定RANKL,RANK和OPG中的单核苷酸多态性(SNP)是否影响男性的骨转换和骨矿物质密度(BMD)。选择成对标签SNP(r(2)>或= 0.8)作为RANKL,RANK和OPG及其10-kb侧翼区域。在已发表的全基因组关联研究(GWAS)中,与BMD相关的选定标签SNP加RANKL和OPG附近的5个SNP在2653名年龄在40至79岁的男性中进行了基因分型,这些男性参与了基于人群的男性衰老研究,欧洲男性老龄化研究(EMAS)。在所有男性中均测量了I型胶原蛋白的N末端前肽(PINP)和I型胶原蛋白的C末端交联的端肽(CTX-1)血清水平。通过定量超声(QUS)评估所有男性的跟骨骨密度。腰椎和全髋关节区域BMD(BMD(a))通过双能X射线吸收法(DXA)在620名男性患者中进行了测量。多个OPG,RANK和RANKL SNP与骨转换标记相关。我们还确定了许多与BMD相关的SNP,包括OPG中的rs2073618和RANKL附近的rs9594759。 rs2073618(C)的次要等位基因与PINP(beta = 1.83,p = .004)和CTX-I(beta = 17.59,p = 4.74 x 10(-4))和较高的腰椎水平都相关BMD(a)(β= -0.02,p = .026)。 rs9594759(C)的次要等位基因与较低的PINP(β= -1.84,p = .003)和CTX-1(β= -27.02,p = 6.06 x 10(-8))和较高的BMD相关跟骨(β= 0.01,p = .037)。我们的研究结果表明,RANKL / RANK / OPG信号通路中的遗传变异会影响欧洲男性的骨转换和BMD。

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