Department of Medical Genetics, State Key Laboratory of Biotherapy, West China Hospital, West China Medical School, Sichuan University, Chengdu, China.
Reprod Fertil Dev. 2024 Jan;36. doi: 10.1071/RD23042.
The human TSPY1 (testis-specific protein, Y-linked 1) gene is critical for spermatogenesis and male fertility. However, there have been difficulties with studying the mechanism underlying its function, partly due to the presence of the Tspy1 pseudogene in mice.
TSPYL5 (TSPY-like 5), an autosomal homologous gene of TSPY1 showing a similar expression pattern in both human and mouse testes, is also speculated to play a role in male spermatogenesis. It is beneficial to understand the role of TSPY1 in spermatogenesis by investigating Tspyl5 functions.
Tspyl5 -knockout mice were generated to investigate the effect of TSPYL5 knockout on spermatogenesis.
Tspyl5 deficiency caused a decline in fertility and decreased the numbers of spermatogonia and spermatozoa in aged male mice. Trancriptomic detection of spermatogonia derived from aged Tspyl5 -knockout mice revealed that the Pcna -mediated DNA replication pathway was downregulated. Furthermore, Tspyl5 was proven to facilitate spermatogonia proliferation and upregulate Pcna expression by promoting the ubiquitination-degradation of the TRP53 protein.
Our findings suggest that Tspyl5 is a positive regulator for the maintenance of the spermatogonia pool by enhancing Pcna -mediated DNA replication.
This observation provides an important clue for further investigation of the spermatogenesis-related function of TSPY1 .
人类 TSPY1(睾丸特异性蛋白,Y 连锁 1)基因对精子发生和男性生育能力至关重要。然而,由于在小鼠中存在 Tspy1 假基因,研究其功能的机制一直存在困难。
TSPYL5(TSPY 样 5)是 TSPY1 的常染色体同源基因,在人和小鼠睾丸中具有相似的表达模式,也被推测在男性精子发生中发挥作用。通过研究 Tspyl5 的功能,有助于了解 TSPY1 在精子发生中的作用。
生成 Tspyl5 敲除小鼠,以研究 TSPYL5 敲除对精子发生的影响。
Tspyl5 缺失导致生育能力下降,老年雄性小鼠的精原细胞和精子数量减少。对来源于老年 Tspyl5 敲除小鼠的精原细胞进行转录组检测显示,Pcna 介导的 DNA 复制途径下调。此外,Tspyl5 通过促进 TRP53 蛋白的泛素化降解,促进精原细胞增殖并上调 Pcna 表达,从而证明其有助于精原细胞增殖。
我们的研究结果表明,Tspyl5 通过增强 Pcna 介导的 DNA 复制,作为维持精原细胞库的正调控因子。
这一观察结果为进一步研究 TSPY1 的精子发生相关功能提供了重要线索。