Nutrition and Endocrine Research Center, Research Institute for Endocrine Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Cellular and Molecular Endocrine Research Center, Research Institute for Endocrine Sciences, Shahid Beheshti University of Medical Sciences, Tehran, 19195-4763, Iran.
BMC Endocr Disord. 2023 Oct 10;23(1):217. doi: 10.1186/s12902-023-01463-7.
Genome-wide association studies in Western countries indicate a considerable impact of variations in vitamin D binding protein (GC) genes on serum concentrations of 25-hydroxyvitamin D (25(OH)D). We aimed to investigate an association between rs2282679 polymorphism in GC and vitamin D deficiency.
A cross-sectional study conducted in the framework of the Tehran Cardio-Metabolic Genetic Study (TCGS) cohort. A total of 1568 participants aged > 18 years were randomly selected, and their 25(OH) D concentration was measured. Vitamin D deficiency was assessed concerning rs2282679 by descriptive and multivariate analysis, odds ratio (OR), and 95% confidence intervals (95%CI) calculated. Since the interaction term between rs2282679 and recruitment season was significant, we performed regression analysis separately for individuals whose blood was taken in high sunny and those whose blood was drawn in the low sunny season.
The rs2282679 polymorphism was in Hardy-Weinberg equilibrium (P > 0.05) in the studied population. The serum concentration of 25(OH) D median was 15.0 ng/mL, and the prevalence of VDD was 27.8%. The presence of the G allele in rs2282679 increases the risk of VDD in additive (OR = 1.35, 95% CI: 1.06-1.73) and dominant (OR = 1.33, 95% CI: 1.06-1.68) genetic models. After separating participants based on the recruitment season, the unfavorable association was observed in the additive and dominant only in the low sunny season.
The finding of the current study indicates that the GC rs2282679 SNP is associated with vitamin D deficiency. It seems that the impact of risk allele increased in the low sunny season when UV exposure has been declined.
在西方国家进行的全基因组关联研究表明,维生素 D 结合蛋白(GC)基因的变异对血清 25-羟维生素 D(25(OH)D)浓度有相当大的影响。我们旨在研究 GC 基因中的 rs2282679 多态性与维生素 D 缺乏之间的关联。
这是一项在德黑兰心脏代谢遗传研究(TCGS)队列框架内进行的横断面研究。随机选择了 1568 名年龄大于 18 岁的参与者,并测量了他们的 25(OH)D 浓度。通过描述性和多元分析、比值比(OR)和 95%置信区间(95%CI)计算,评估了 rs2282679 与维生素 D 缺乏的关系。由于 rs2282679 与招募季节的交互项具有统计学意义,我们分别对血液采集在阳光充足的高季节和阳光充足的低季节的个体进行了回归分析。
在所研究的人群中,rs2282679 多态性处于 Hardy-Weinberg 平衡(P>0.05)。25(OH)D 血清浓度中位数为 15.0ng/mL,VDD 患病率为 27.8%。rs2282679 中的 G 等位基因增加了 VDD 的风险,在加性(OR=1.35,95%CI:1.06-1.73)和显性(OR=1.33,95%CI:1.06-1.68)遗传模型中均如此。根据招募季节将参与者分开后,仅在阳光不足的季节,在加性和显性遗传模型中观察到不利的关联。
本研究的结果表明,GC rs2282679 SNP 与维生素 D 缺乏有关。似乎在紫外线暴露减少的低阳光季节,风险等位基因的影响增加。