Guangdong and Shenzhen Key Laboratory of Male Reproductive Medicine and Genetics, Institute of Urology, Peking University Shenzhen Hospital, Shenzhen PKU-HKUST Medical Center, Shenzhen, People's Republic of China.
Sci Rep. 2021 Feb 25;11(1):4587. doi: 10.1038/s41598-021-84182-0.
Genetic factors are one of the most important causes of non-obstructive azoospermia (NOA). ESX1 is an X-linked testis-biased expressed gene, and a potential biomarker for testicular sperm retrieval in NOA patients, yet few systematic studies have investigated its association with NOA. Here, we performed selected exonic sequencing in a large cohort of Chinese males, and four novel missense mutations (including one compound mutation), one novel synonymous mutation of ESX1 unique to NOA patients were identified. We analyzed the effects of ESX1 mutations on cyclin A degradation and cell cycle progression by immunoprecipitation assay and flow cytometry, and found that the compound mutant p.[P365R; L366V] ESX1 compromised the stabilizing effect of ESX1 on polyubiquitinated cyclin A, thereby causing the failure of M phase arrest in cells. Further studies showed that the deleterious effect of the compound mutations on ESX1 protein function was attributed to p.P365R but not p.L366V alteration. The novel ESX1 mutation p.P365R might confer high risk for NOA in Han Chinese population, probably via affecting cell cycle control.
遗传因素是非梗阻性无精子症(NOA)的最重要原因之一。ESX1 是一个 X 连锁的睾丸偏向表达基因,是 NOA 患者睾丸精子获取的潜在生物标志物,但很少有系统研究调查其与 NOA 的关联。在这里,我们在一个大型中国男性队列中进行了选择性外显子测序,发现了四个新的错义突变(包括一个复合突变)和一个 ESX1 中特有的与 NOA 患者相关的新同义突变。我们通过免疫沉淀分析和流式细胞术分析了 ESX1 突变对细胞周期进程中细胞周期蛋白 A 降解的影响,发现复合突变 p.[P365R; L366V] ESX1 削弱了 ESX1 对多泛素化细胞周期蛋白 A 的稳定作用,从而导致细胞 M 期阻滞失败。进一步的研究表明,该复合突变对 ESX1 蛋白功能的有害影响归因于 p.P365R 而不是 p.L366V 的改变。新型 ESX1 突变 p.P365R 可能通过影响细胞周期控制,导致汉族人群发生 NOA 的风险增加。