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首页> 外文期刊>The American Journal of Clinical Nutrition: Official Journal of the American Society for Clinical Nutrition >Functional effects of a common single-nucleotide polymorphism (GPX4c718t) in the glutathione peroxidase 4 gene: interaction with sex.
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Functional effects of a common single-nucleotide polymorphism (GPX4c718t) in the glutathione peroxidase 4 gene: interaction with sex.

机译:谷胱甘肽过氧化物酶4基因中常见的单核苷酸多态性(GPX4c718t)的功能作用:与性交往。

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摘要

BACKGROUND: Selenium is essential for health in humans. Selenium is present as selenocysteine in selenoproteins such as the glutathione peroxidases (GPx). Selenocysteine incorporation requires specific structures in the 3'untranslated region (3'UTR) of selenoprotein mRNAs. OBJECTIVE: This study investigated the functional significance of the single-nucleotide polymorphism (SNP) GPx4c718t within the 3'UTR of the GPx4 gene. DESIGN: A selenium supplementation trial was carried out with prospectively genotyped individuals of both homozygote genotypes for this SNP. Blood samples were analyzed at baseline, after a 6-wk supplementation with 100 mug Se as sodium selenite/d, and during a 6-wk washout period. RNA-protein binding studies were carried out in vitro. RESULTS: Both lymphocyte GPx1 protein concentrations and plasma GPx3 activity increased significantly after selenium supplementation in CC but not TT participants. After selenium withdrawal, there was a significant fall in both lymphocyte GPx4 protein concentrations and GPx4 activity in TT but not in CC participants; this effect was modulated by sex. RNA-protein binding assays showed that both T and C variants of transcripts corresponding to the GPx4 3'UTR formed complexes in vitro and that the C variant bound more strongly than did either the T variant or the GPx1 3'UTR. CONCLUSIONS: The GPX4c718t SNP both alters protein binding to the 3'UTR in vitro and influences the concentration of lymphocyte GPx4 and other selenoproteins in vivo. The latter is consistent with competition for selenium in selenoprotein synthesis, and, at low selenium intake, the SNP thus may influence susceptibility to disease.
机译:背景:硒对于人类健康至关重要。硒作为硒代半胱氨酸存在于诸如谷胱甘肽过氧化物酶(GPx)之类的硒蛋白中。硒代半胱氨酸的掺入需要硒蛋白mRNA的3'非翻译区(3'UTR)中的特定结构。目的:本研究探讨了GPx4基因3'UTR内单核苷酸多态性(SNP)GPx4c718t的功能意义。设计:针对该SNP的两种纯合子基因型的前瞻性基因分型个体进行了硒补充试验。在补充了6周的100杯硒硒/天的硒6周后,以及6周的冲洗期间,对血液样本进行了分析。 RNA-蛋白质结合研究是在体外进行的。结果:CC组补充硒后,淋巴细胞GPx1蛋白浓度和血浆GPx3活性均显着增加,而TT组则没有。硒撤出后,TT中淋巴细胞GPx4蛋白浓度和GPx4活性均显着下降,但CC参与者无此下降。这种效果是由性别调节的。 RNA-蛋白质结合测定法显示,对应于GPx4 3'UTR的转录本的T和C变体在体外形成复合物,并且C变体与T变体或GPx1 3'UTR的结合更牢固。结论:GPX4c718t SNP体外改变了蛋白质与3'UTR的结合,并影响了体内淋巴细胞GPx4和其他硒蛋白的浓度。后者与硒在硒蛋白合成中的竞争是一致的,因此,在硒摄入量低的情况下,SNP可能会影响疾病的易感性。

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