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Deficiency of primate-specific SSX1 induced asthenoteratozoospermia in infertile men and cynomolgus monkey and tree shrew models.

Chunyu LiuWei SiChaofeng TuShixiong TianXiaojin HeShengnan WangXiaoyu YangChencheng YaoCong LiZine-Eddine KherrafMaosen YeZixue ZhouYuhua MaYang GaoYu LiQiwei LiuShuyan TangJiaxiong WangHexige SaiyinLiangyu ZhaoLiqun YangLanlan MengBingbing ChenDongdong TangYiling ZhouHuan WuMingrong LvChen TanGe LinQingpeng KongHong ShiZhixi SuZheng LiYong-Gang YaoLi JinPing ZhengPierre F RayYue-Qiu TanYunxia CaoFeng Zhang
Published in: American journal of human genetics (2023)
Primate-specific genes (PSGs) tend to be expressed in the brain and testis. This phenomenon is consistent with brain evolution in primates but is seemingly contradictory to the similarity of spermatogenesis among mammals. Here, using whole-exome sequencing, we identified deleterious variants of X-linked SSX1 in six unrelated men with asthenoteratozoospermia. SSX1 is a PSG expressed predominantly in the testis, and the SSX family evolutionarily expanded independently in rodents and primates. As the mouse model could not be used for studying SSX1, we used a non-human primate model and tree shrews, which are phylogenetically similar to primates, to knock down (KD) Ssx1 expression in the testes. Consistent with the phenotype observed in humans, both Ssx1-KD models exhibited a reduced sperm motility and abnormal sperm morphology. Further, RNA sequencing indicated that Ssx1 deficiency influenced multiple biological processes during spermatogenesis. Collectively, our experimental observations in humans and cynomolgus monkey and tree shrew models highlight the crucial role of SSX1 in spermatogenesis. Notably, three of the five couples who underwent intra-cytoplasmic sperm injection treatment achieved a successful pregnancy. This study provides important guidance for genetic counseling and clinical diagnosis and, significantly, describes the approaches for elucidating the functions of testis-enriched PSGs in spermatogenesis.
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