Department of Experimental Genome Research, Research Institute for Microbial Diseases, Osaka University, Suita, Osaka, Japan.
Graduate School of Pharmaceutical Sciences, Osaka University, Suita, Osaka, Japan.
Biol Reprod. 2019 Aug 1;101(2):501-511. doi: 10.1093/biolre/ioz103.
More than 1000 genes are predicted to be predominantly expressed in mouse testis, yet many of them remain unstudied in terms of their roles in spermatogenesis and sperm function and their essentiality in male reproduction. Since individually indispensable factors can provide important implications for the diagnosis of genetically related idiopathic male infertility and may serve as candidate targets for the development of nonhormonal male contraceptives, our laboratories continuously analyze the functions of testis-enriched genes in vivo by generating knockout mouse lines using the CRISPR/Cas9 system. The dispensability of genes in male reproduction is easily determined by examining the fecundity of knockout males. During our large-scale screening of essential factors, we knocked out 30 genes that have a strong bias of expression in the testis and are mostly conserved in mammalian species including human. Fertility tests reveal that the mutant males exhibited normal fecundity, suggesting these genes are individually dispensable for male reproduction. Since such functionally redundant genes are of diminished biological and clinical significance, we believe that it is crucial to disseminate this list of genes, along with their phenotypic information, to the scientific community to avoid unnecessary expenditure of time and research funds and duplication of efforts by other laboratories.
据预测,超过 1000 个基因在小鼠睾丸中主要表达,但其中许多基因在精子发生和精子功能方面的作用及其在男性生殖中的必要性仍未得到研究。由于单独不可或缺的因素可以为遗传性特发性男性不育症的诊断提供重要启示,并可能成为非激素男性避孕药具开发的候选靶点,因此我们的实验室继续使用 CRISPR/Cas9 系统生成敲除小鼠品系,在体内分析富含睾丸的基因的功能。通过检查敲除雄性的生育能力,很容易确定雄性生殖中基因的非必需性。在我们对必需因素的大规模筛选中,我们敲除了 30 个在睾丸中表达强烈偏向且在包括人类在内的哺乳动物物种中大多保守的基因。生育能力测试显示,突变雄性具有正常的生育能力,表明这些基因对于雄性生殖是单独可有可无的。由于这些具有功能冗余的基因在生物学和临床意义上有所减弱,因此我们认为,向科学界传播这些基因及其表型信息至关重要,以避免其他实验室不必要的时间和研究资金支出以及工作重复。