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尿酸转运蛋白功能基因变异与特发性男性不育风险的关联:一项基因关联研究和生物信息学分析

Association of Functional Genetic Variations in Uric Acid Transporters with the Risk of Idiopathic Male Infertility: A Genetic Association Study and Bioinformatic Analysis.

作者信息

Karimian Mohammad, Shabani Maryam, Nikzad Hossein

机构信息

Department of Molecular and Cell Biology, Faculty of Basic Sciences, University of Mazandaran, Babolsar, 47416-95447, Iran.

Anatomical Sciences Research Center, Kashan University of Medical Sciences, Qotb-e Ravandi Blvd., Kashan, 8715988141, Iran.

出版信息

Biochem Genet. 2024 Aug 14. doi: 10.1007/s10528-024-10902-6.

Abstract

Uric acid plays an important role in sustaining and improving sperm morphology, viability, and motility. It is known that SLC2A9 and ABCG2 protein are the main urate transporter and genetic variations in these genes could be associated with the levels of serum uric acid. This study aimed to investigate the association between single-nucleotide polymorphisms (SNPs) SLC2A9-rs16890979, SLC2A9-rs3733591, ABCG2-rs2231142, and ABCG2-rs2231137 with male infertility. Additionally, the correlation of these SNPs with the uric acid level in seminal plasma of infertile men was examined. Subsequently, an in silico analysis was performed. In a case-control study, 193 infertile and 154 healthy controls were recruited. After semen sample collection, the uric acid level of seminal plasma was measured by a commercial kit. After genomic DNA extraction from sperm samples, SNPs genotyping was performed by PCR-RFLP method. Lastly, the effects of SNPs on the SLC2A9 and ABCG2 gene function were evaluated by bioinformatics tools. The genetic association study revealed that there are significant associations between rs16890979, rs3733591, rs2231142, and rs2231137 genetic variations and increased risk of male infertility. Also, these variations were associated with oligozoospermia and teratozoospermia, and sometimes with asthenozoospermia. Also, we found that four studied SNPs could be associated with a decreased level of uric acid of seminal plasma in teratozoospermia and asthenozoospermia. Bioinformatic analysis revealed that the mentioned polymorphisms could affect molecular aspects of SLC2A9 and ABCG2 genes. In this preliminary study, the rs16890979, rs3733591, rs2231142, and rs2231137 genetic variations could be considered as genetic risk factors for male infertility by interfering with the uric acid level of seminal plasma.

摘要

尿酸在维持和改善精子形态、活力及运动能力方面发挥着重要作用。已知溶质载体家族2成员9(SLC2A9)和ATP结合盒转运体G2(ABCG2)蛋白是主要的尿酸转运体,这些基因的遗传变异可能与血清尿酸水平相关。本研究旨在探讨单核苷酸多态性(SNP)SLC2A9-rs16890979、SLC2A9-rs3733591、ABCG2-rs2231142和ABCG2-rs2231137与男性不育症之间的关联。此外,还检测了这些SNP与不育男性精浆中尿酸水平的相关性。随后进行了计算机模拟分析。在一项病例对照研究中,招募了193名不育男性和154名健康对照者。采集精液样本后,使用商用试剂盒测定精浆中的尿酸水平。从精子样本中提取基因组DNA后,采用聚合酶链反应-限制性片段长度多态性(PCR-RFLP)方法进行SNP基因分型。最后,通过生物信息学工具评估SNP对SLC2A9和ABCG2基因功能的影响。遗传关联研究表明,rs16890979、rs3733591、rs2231142和rs2231137的遗传变异与男性不育风险增加之间存在显著关联。此外,这些变异与少精子症和畸形精子症相关,有时也与弱精子症相关。而且,我们发现所研究的四个SNP可能与畸形精子症和弱精子症患者精浆中尿酸水平降低有关。生物信息学分析表明,上述多态性可能会影响SLC2A9和ABCG2基因的分子层面。在这项初步研究中,rs16890979、rs3733591、rs2231142和rs2231137的遗传变异可能通过干扰精浆尿酸水平而被视为男性不育的遗传风险因素。

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