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Identification of Potentially Damaging Amino Acid Substitutions Leading to Human Male Infertility

机译:导致人类男性不育的潜在破坏性氨基酸取代的鉴定

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摘要

There are a number of known genetic alterations found in men with nonobstructive azoospermia, or testicular failure, such as Y microdeletions and cytogenetic abnormalities. However, the etiology of nonobstructive azoospermia is unknown in the majority of men. The aim of this study was to investigate the possibility that unexplained cases of nonobstructive azoospermia are caused by nonsynonymous single-nucleotide polymorphisms (SNPs) in the coding regions of autosomal genes associated with sperm production and fertility. Using a candidate gene approach based on genetics of male infertility in mice, we resequenced nine autosomal genes from 78 infertile men displaying testicular failure using custom-made next-generation resequencing chips. Analysis of the data revealed several novel heterozygous nonsynonymous SNPs in four of nine sequenced genes in 14 of 78 infertile men. Eight SNPs in SBF1, three SNPs in LIMK2, two SNPs in LIPE, and one SNP in TBPL1 were identified. All of the novel mutations were in a heterozygous configuration, suggesting that they may be de novo mutations with dominant negative properties.
机译:在患有非阻塞性无精症或睾丸衰竭的男性中发现了许多已知的遗传改变,例如Y微缺失和细胞遗传异常。但是,大多数男性的非阻塞性无精症的病因尚不清楚。这项研究的目的是调查不明原因的非阻塞性无精子症是由常染色体基因编码区的非同义单核苷酸多态性(SNP)与精子产生和生育力相关引起的。使用基于小鼠男性不育遗传的候选基因方法,我们使用定制的下一代重测序芯片对来自78位不育男性的9个常染色体基因进行了重测序,这些基因显示了睾丸衰竭。数据分析显示,在78位不育男性中的14位中,有9个测序基因中有4个具有几个新的杂合非同义SNP。确定了SBF1中的八个SNP,LIMK2中的三个SNP,LIPE中的两个SNP和TBPL1中的一个SNP。所有这些新突变均处于杂合构型,表明它们可能是具有显性负性特征的从头突变。

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