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胆碱脱氢酶多态性 rs12676 是一种功能变异,与人类精子功能的变化有关。

Choline dehydrogenase polymorphism rs12676 is a functional variation and is associated with changes in human sperm cell function.

机构信息

Department of Nutrition, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.

出版信息

PLoS One. 2012;7(4):e36047. doi: 10.1371/journal.pone.0036047. Epub 2012 Apr 27.

Abstract

Approximately 15% of couples are affected by infertility and up to half of these cases arise from male factor infertility. Unidentified genetic aberrations such as chromosomal deletions, translocations and single nucleotide polymorphisms (SNPs) may be the underlying cause of many cases of idiopathic male infertility. Deletion of the choline dehydrogenase (Chdh) gene in mice results in decreased male fertility due to diminished sperm motility; sperm from Chdh(-/-) males have decreased ATP concentrations likely stemming from abnormal sperm mitochondrial morphology and function in these cells. Several SNPs have been identified in the human CHDH gene that may result in altered CHDH enzymatic activity. rs12676 (G233T), a non-synonymous SNP located in the CHDH coding region, is associated with increased susceptibility to dietary choline deficiency and risk of breast cancer. We now report evidence that this SNP is also associated with altered sperm motility patterns and dysmorphic mitochondrial structure in sperm. Sperm produced by men who are GT or TT for rs12676 have 40% and 73% lower ATP concentrations, respectively, in their sperm. rs12676 is associated with decreased CHDH protein in sperm and hepatocytes. A second SNP located in the coding region of IL17BR, rs1025689, is linked to altered sperm motility characteristics and changes in choline metabolite concentrations in sperm.

摘要

约 15%的夫妇受到不孕不育的影响,其中多达一半的病例是由男性因素引起的。未确定的遗传异常,如染色体缺失、易位和单核苷酸多态性(SNPs),可能是许多特发性男性不育症的潜在原因。在小鼠中,胆碱脱氢酶(Chdh)基因的缺失导致精子活力下降,从而降低了雄性生育能力;Chdh(-/-) 雄性的精子中 ATP 浓度降低,可能源于这些细胞中异常的精子线粒体形态和功能。人类 CHDH 基因中已经鉴定出几个可能导致 CHDH 酶活性改变的 SNPs。rs12676(G233T)是位于 CHDH 编码区的非同义 SNP,与增加对膳食胆碱缺乏的易感性和乳腺癌风险相关。我们现在报告的证据表明,该 SNP 还与精子运动模式改变和精子中线粒体形态异常有关。携带 rs12676 GT 或 TT 的男性产生的精子中,ATP 浓度分别降低了 40%和 73%。rs12676 与精子和肝细胞中 CHDH 蛋白减少有关。另一个位于编码区的 IL17BR 中的 SNP,rs1025689,与精子运动特征改变和精子中胆碱代谢物浓度变化有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21ee/3338626/9f8bec8728ff/pone.0036047.g001.jpg

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