Wang Qian, Liu Chao, Tang Chaoming, Guo Huiping, Liu Yujiao, Wang Lina, Zhao Haichao, Shang Yongliang, Wen Yang, Lin Yuan, Zhou Tao, Zhou Zuomin, Dong Wen, Hu Zhibin, Guo Xuejiang, Sha Jiahao, Li Wei
1] State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China [2] University of Chinese Academy of Sciences, Beijing 100049, China.
State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
Sci Rep. 2015 Jul 8;5:11762. doi: 10.1038/srep11762.
Approximately ten percent of male infertility is caused by non-obstructive azoospermia (NOA), but the etiologies of many NOA remain elusive. Recently, a genome-wide association study (GWAS) of NOA in Han Chinese men was conducted, and only a few genetic variants associated with NOA were found, which might have resulted from genetic heterogeneity. However, those variants that lack genome-wide significance might still be essential for fertility. Functional analysis of genes surrounding these variants in Drosophila identified some spermatogenesis-essential genes. As a complementary method of Drosophila screening, SK1 background Saccharomvces cerevisiae was used as a model to screen meiosis-related genes from the NOA GWAS data in this study. After functional screening, GDA1 (orthologous to humanENTPD6) was found to be a novel meiosis-related gene. The deletion of GDA1 resulted in the failure of yeast sporulation. Further investigations showed that Gda1p was important for pre-meiotic S phase entry. Interestingly, the meiotic role of Gda1p was dependent on its guanosine diphosphatase activity, but not it's cytoplasmic, transmembrane or stem domains. These yeast data suggest that ENTPD6 may be a novel meiosis-associated NOA-related gene, and the yeast model provides a good approach to analyze GWAS results of NOA.
大约10%的男性不育是由非梗阻性无精子症(NOA)引起的,但许多NOA的病因仍然不明。最近,对中国汉族男性的NOA进行了全基因组关联研究(GWAS),仅发现了少数与NOA相关的基因变异,这可能是由于遗传异质性所致。然而,那些缺乏全基因组显著性的变异可能对生育能力仍然至关重要。在果蝇中对这些变异周围基因的功能分析鉴定出了一些精子发生必需基因。作为果蝇筛选的补充方法,本研究中使用SK1背景的酿酒酵母作为模型,从NOA的GWAS数据中筛选减数分裂相关基因。经过功能筛选,发现GDA1(与人类ENTPD6同源)是一个新的减数分裂相关基因。GDA1的缺失导致酵母孢子形成失败。进一步研究表明,Gda1p对减数分裂前S期进入很重要。有趣的是,Gda1p的减数分裂作用取决于其鸟苷二磷酸酶活性,而不是其细胞质、跨膜或茎结构域。这些酵母数据表明,ENTPD6可能是一个新的与减数分裂相关的NOA相关基因,并且酵母模型为分析NOA的GWAS结果提供了一个很好的方法。