首页> 外文期刊>Fertility and Sterility: Official Journal of the American Fertility Society, Pacific Coast Fertility Society, and the Canadian Fertility and Andrology Society >Array-based DNA methylation profiling in male infertility reveals allele-specific DNA methylation in PIWIL1 and PIWIL2
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Array-based DNA methylation profiling in male infertility reveals allele-specific DNA methylation in PIWIL1 and PIWIL2

机译:男性不育中基于阵列的DNA甲基化分析揭示了PIWIL1和PIWIL2中的等位基因特异性DNA甲基化

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Objective To identify CpG sites differentially methylated in peripheral blood of men with idiopathic infertility due to impaired spermatogenesis as compared with fertile controls. Design DNA methylation profiling on peripheral blood samples using the HumanMethylation450 BeadChip (Illumina) in patients and controls, single-nucleotide polymorphism (SNP) typing by Sanger sequencing. Setting University institute in cooperation with genetic and infertility clinics. Patient(s) 30 infertile men with normal CFTR and AZF tests and karyotype, and 10 fertile male controls. Intervention(s) None. Main Outcome Measure(s) DNA methylation levels at CpG sites. Result(s) We identified 471 CpGs (287 genes) as differentially methylated between patients and controls. These were significantly enriched for the gene ontology functions MHC class II receptor activity and piwi-interacting (piRNA) binding. The latter was associated with two methylation-sensitive SNPs in the genes PIWIL1 and PIWIL2, respectively, which showed significant allele distribution skewing in the infertile cohort. We found that 445 (94.5%) of 471 differentially methylated CpGs were associated with SNPs, but 26 (15 genes) were not genomically templated, including the ENO1, MTA2, BRSK2, and LBX2 genes previously associated with fertility and spermatogenesis. Conclusion(s) Our study identifies surrogate DNA methylation markers for idiopathic infertility in peripheral blood and suggests that allele-specific DNA methylation differences at regulatory sites of genes involved in piRNA regulation are associated with disturbed spermatogenesis.
机译:目的确定与受精对照相比,特发性男性不育症患者精子发生受损的外周血中甲基化的CpG位点。使用HumanMethylation450 BeadChip(Illumina)在患者和对照中设计DNA甲基化图谱,通过Sanger测序进行单核苷酸多态性(SNP)分型。与基因和不育诊所合作设立大学研究所。患者30名CFTR和AZF测试及核型正常的不育男性和10名可育男性对照。干预措施无。主要结果测量CpG位点的DNA甲基化水平。结果我们确定了471个CpGs(287个基因)在患者和对照组之间存在甲基化差异。这些显着丰富了MHC II类受体活性和piwi-interacting(piRNA)结合的基因本体功能。后者分别与基因PIWIL1和PIWIL2中的两个甲基化敏感SNP相关,它们在不育人群中显示出明显的等位基因分布偏斜。我们发现471个差异甲基化的CpG中有445个(94.5%)与SNP相关,但是没有基因组学上模板化了26个(15个基因),包括以前与生育力和精子发生有关的ENO1,MTA2,BRSK2和LBX2基因。结论我们的研究确定了外周血特发性不育的替代性DNA甲基化标记,并暗示在piRNA调控基因调控位点的等位基因特异性DNA甲基化差异与精子发生受阻有关。

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