首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Genetic Variation in GPX1 Is Associated with GPX1 Activity in a Comprehensive Analysis of Genetic Variations in Selenoenzyme Genes and Their Activity and Oxidative Stress in Humans
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Genetic Variation in GPX1 Is Associated with GPX1 Activity in a Comprehensive Analysis of Genetic Variations in Selenoenzyme Genes and Their Activity and Oxidative Stress in Humans

机译:GPX1的遗传变异与GPX1的活性有关,对人体硒酶基因的遗传变异及其活性和氧化应激进行综合分析

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Previous studies suggest some effects of selenium on risk of several chronic diseases, which may be mediated through a small number of selenoenzymes with antioxidant properties. In this cross-sectional analysis of 195 participants from the Seattle Barrett’s Esophagus Study who were free of esophageal cancer at the time of blood draw, we examined whether the number of the minor alleles in 26 tagging single nucleotide polymorphisms (SNP) of five selenoenzyme genes [i.e., glutathione peroxidase 1–4 (GPX1–4) and selenoprotein P (SEPP1)] was associated with activity of GPX1 in white blood cells and GPX3 in plasma, and concentrations of SEPP1 and markers of oxidative stress [malondialdehyde (MDA) and protein carbonyl content] in plasma. At the gene level, associations were observed between overall variation in GPX1 and GPX1 activity (P = 0.02) as well as between overall variation in GPX2 and SEPP1 concentrations (P = 0.03). By individual SNP, two variants in GPX1 (rs8179164 and rs1987628) showed a suggestive association with GPX1 activity (P = 0.10 and 0.08, respectively) and two GPX2 variants (rs4902346 and rs2071566) were associated with SEPP1 concentration (P = 0.004 and 0.002, respectively). Furthermore, two SNP in the SEPP1 gene (rs230813 and rs230819) were associated with MDA concentrations (P = 0.03 and 0.02, respectively). Overall, our study supports the hypothesis that common genetic variants in selenoenzymes affect their activity.
机译:先前的研究表明硒对几种慢性疾病风险的某些影响,可能是通过少量具有抗氧化特性的硒酶介导的。在对西雅图Barrett食管研究的195名在抽血时没有食道癌的参与者的横断面分析中,我们检查了五个硒酶基因的26个标记单核苷酸多态性(SNP)中的次要等位基因数量是否[即,谷胱甘肽过氧化物酶1-4(GPX1-4)和硒蛋白P(SEPP1)]与白细胞中GPX1的活性和血浆中GPX3的活性,SEPP1的浓度以及氧化应激的标志物[丙二醛(MDA)和蛋白羰基含量]。在基因水平上,观察到GPX1和GPX1活性的总体变化之间的关联(P = 0.02),以及GPX2和SEPP1浓度的总体变化之间的关联(P = 0.03)。通过单独的SNP,GPX1中的两个变体(rs8179164和rs1987628)显示出与GPX1活性的暗示关联(分别为P = 0.10和0.08),而两个GPX2变体(rs4902346和rs2071566)与SEPP1浓度相关(P = 0.004和0.002,分别)。此外,SEPP1基因中的两个SNP(rs230813和rs230819)与MDA浓度相关(分别为P = 0.03和0.02)。总体而言,我们的研究支持以下假设:硒酶中常见的遗传变异会影响其活性。

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