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首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Impact of genetic influence on serum total-and free 25-hydroxyvitamin-D in humans
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Impact of genetic influence on serum total-and free 25-hydroxyvitamin-D in humans

机译:遗传影响对人类血清和自由25-羟基维生素-D的影响

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摘要

Serum 25-hydroxyvitamin D/250HD/ levels in humans are determined primarily by environmental factors such as UV-B radiation and diet, including vitamin D intake. Although some genetic determinants of 250HD levels have been shown, the magnitude of this association has not yet been clarified. The present study evaluates the genetic contribution to total- /t-250HD/ and free-250HD /f-250HD/ in a representative sample of the Hungarian population (n = 462). The study was performed at the end of winter to minimize the effect of sunlight, which is a major determinant of serum vitamin D levels. Single nucleotide polymorphisms (SNPs) of five genes playing major roles in vitamin D metabolism were investigated (NADSYN1, DHCR7, GC, CYP2R1 and CYP24A1). The selected SNPs account for 13.1% of the variance of t-250HD levels. More than half of the genetic effect on t-250HD levels was explained by two polymorphisms (rs7935125 in NADSYN1 and rs2762941 in CYP24A1), which had not previously been investigated with respect to vitamin D metabolism. No SNPs exhibited association with f-250HD levels. Unexpectedly, SNPs that showed univariate associations with vitamin D binding protein (DBP) levels were not associated with f-250HD levels questioning the biological significance of these polymorphisms.
机译:人类血清25-羟基维素D / 250HD /水平主要由UV-B辐射和饮食等环境因素确定,包括维生素D摄入量。虽然已经显示了一些250HD水平的遗传决定簇,但该关联的大小尚未澄清。本研究评估了总共 - / T-250HD /和FREE-250HD / F-250HD /在匈牙利人群的代表性样本中的遗传贡献(n = 462)。该研究在冬季结束时进行,以尽量减少阳光的影响,这是血清维生素D水平的主要决定因素。研究了在维生素D代谢中发挥主要作用的五种基因的单核苷酸多态性(SNP)(Nadsyn1,DHCR7,GC,CYP2R1和CYP24A1)。所选的SNPS占T-250HD水平方差的13.1%。在T-250HD水平上的一半以上遗传效果是通过两种多态性(NADSYN1和CYP24A1中的RS2762941中的RS7935125)解释,以前没有关于维生素D代谢的研究。没有SNP与F-250HD水平表现出联合。出乎意料地,显示与维生素D结合蛋白(DBP)水平的单变量关联的SNP与质疑这些多态性的生物学意义的F-250HD水平无关。

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