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编码抗氧化酶 SOD2(rs4880)、GPX1(rs1050450)和 CAT(rs1001179)的基因变异与男性不育易感性的关系:一项遗传关联研究和计算机分析。

Variation of the genes encoding antioxidant enzymes SOD2 (rs4880), GPX1 (rs1050450), and CAT (rs1001179) and susceptibility to male infertility: a genetic association study and in silico analysis.

机构信息

Department of Molecular and Cell Biology, Faculty of Science, University of Mazandaran, Babolsar, CP:47416-95447, Mazandaran, Iran.

Faculty of Biotechnology, Amol University of Special Modern Technologies, Amol, Mazandaran, Iran.

出版信息

Environ Sci Pollut Res Int. 2023 Aug;30(36):86412-86424. doi: 10.1007/s11356-023-28474-0. Epub 2023 Jul 5.

Abstract

Enzymatic factors including superoxide dismutase (SOD), glutathione peroxidase (GPX), and catalase (CAT) are among the most important protective antioxidant systems in human semen. This study was conducted to investigate the association between the activities of the mentioned enzymes in semen and also the association between SOD2 rs4880, GPX1 rs1050450, and CAT rs1001179 polymorphisms with male infertility, which was followed by a bioinformatics approach. In a case-control study, 223 infertile men and 154 healthy fertile men were included in the study. After extracting genomic DNA from semen samples, the genotype of rs1001179, rs1050450, and rs4880 polymorphisms was determined using the PCR-RFLP. Next, the activities of SOD, CAT, and GPX enzymes were also measured in semen. Bioinformatics software was used to investigate the effect of polymorphisms on the function of genes. Data analysis indicated that rs1001179 polymorphisms were not associated with male infertility. But our data revealed that the rs1050450 polymorphism is associated with a reduced risk of male infertility as well as asthenozoospermia and teratozoospermia. In addition, rs4880 polymorphism was associated with an increased risk of male infertility as well as teratozoospermia. Further analysis showed that the activity of the CAT enzyme in the infertile group is significantly higher than in the fertile group, but the activity of GPX and SOD enzymes in the infertile group is significantly lower than in the fertile group. Bioinformatic analysis showed that rs1001179 polymorphism affects the transcription factors binding site upstream of the gene, while rs1050450 and rs4880 polymorphisms had an essential role in protein structure and function. On the other hand, rs1050450 (T allele) was exposed to a reduced risk of male infertility and may be a protective factor. And SOD2 rs4880 (C allele) is associated with an increased risk of male infertility, and it is considered a risk factor for male infertility. To reach accurate results, we recommend that the study of SOD2 rs4880 and GPX1 rs1050450 polymorphism effects in the different populations with a larger sample size and meta-analysis are needed.

摘要

在人类精液中,超氧化物歧化酶(SOD)、谷胱甘肽过氧化物酶(GPX)和过氧化氢酶(CAT)等酶类因素是最重要的保护性抗氧化系统之一。本研究旨在探讨精液中所述酶的活性与 SOD2 rs4880、GPX1 rs1050450 和 CAT rs1001179 多态性与男性不育之间的关联,并采用生物信息学方法进行研究。在病例对照研究中,纳入了 223 名不育男性和 154 名健康生育男性。从精液样本中提取基因组 DNA 后,采用 PCR-RFLP 法确定 rs1001179、rs1050450 和 rs4880 多态性的基因型。接下来,还测量了精液中 SOD、CAT 和 GPX 酶的活性。生物信息学软件用于研究多态性对基因功能的影响。数据分析表明,rs1001179 多态性与男性不育无关。但我们的数据显示,rs1050450 多态性与男性不育以及弱精症和畸形精子症的风险降低有关。此外,rs4880 多态性与男性不育以及畸形精子症的风险增加有关。进一步分析表明,不育组中 CAT 酶的活性明显高于生育组,而不育组中 GPX 和 SOD 酶的活性明显低于生育组。生物信息学分析表明,rs1001179 多态性影响基因上游的转录因子结合位点,而 rs1050450 和 rs4880 多态性对蛋白质结构和功能具有重要作用。另一方面,rs1050450(T 等位基因)暴露于男性不育的风险降低,可能是一种保护因素。而 SOD2 rs4880(C 等位基因)与男性不育的风险增加有关,被认为是男性不育的风险因素。为了得出准确的结果,我们建议在不同人群中进行更大样本量的 SOD2 rs4880 和 GPX1 rs1050450 多态性效应研究,并进行荟萃分析。

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