The Sperm Laboratory, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.
The First Affiliated Hospital, College of Medicine, Zhejiang University, Hangzhou 310003, China.
Int J Biol Macromol. 2024 Nov;279(Pt 2):135264. doi: 10.1016/j.ijbiomac.2024.135264. Epub 2024 Sep 1.
As a key planar cell polarity protein, Van Gogh-like 2 (Vangl2) is essential for mammalian spermatogenesis. As a decapod crustacean, Eriocheir sinensis exhibits distinct spermatogenic processes due to its unique seminiferous tubule morphology and hemolymph-testis barrier (HTB). To determine whether Vangl2 performs analogous functions in E. sinensis, we identified the Es-Vangl2. Es-Vangl2 exhibited high expression and wide distribution in the testes, indicating its crucial involvement in spermatogenesis. Following targeted knockdown of Es-Vangl2in vivo, the structure of seminiferous tubules was disrupted, characterized by vacuolization of the germinal zone and obstruction of spermatozoon release. Concurrently, the integrity of the HTB was compromised, accompanied by reduced expression and aberrant localization of junction proteins. More importantly, the regulatory influence of Es-Vangl2 was manifested through modulating the organization of microfilaments, a process mediated by epidermal growth factor receptor pathway substrate 8 (Eps8). Further studies demonstrated that these phenotypes resulting from Es-Vangl2 knockdown were attributed to the inhibition of Rock signaling pathway activity, which was verified by the Es-Rock interference and Y27632 inhibition assays. In summary, the findings highlight the pivotal role of Es-Vangl2 in stabilizing HTB integrity by regulating Eps8-mediated actin remodeling through the Rock signaling pathway in the spermatogenesis of E. sinensis.
作为一个关键的平面细胞极性蛋白,梵高样蛋白 2(Vangl2)对于哺乳动物的精子发生是必不可少的。作为一种十足目甲壳动物,中华绒螯蟹由于其独特的精小管形态和血-睾屏障(HTB)而表现出明显不同的精子发生过程。为了确定 Vangl2 是否在中华绒螯蟹中具有类似的功能,我们鉴定了 Es-Vangl2。Es-Vangl2 在睾丸中表现出高表达和广泛分布,表明其在精子发生中具有重要作用。体内靶向敲低 Es-Vangl2 后,精小管的结构被破坏,生精区出现空泡化,精子释放受阻。同时,HTB 的完整性受损,连接蛋白的表达和定位异常。更重要的是,Es-Vangl2 通过调节微丝的组织来发挥调节作用,这一过程是由表皮生长因子受体途径底物 8(Eps8)介导的。进一步的研究表明,这些由 Es-Vangl2 敲低引起的表型是由于抑制了 Rock 信号通路的活性,这通过 Es-Rock 干扰和 Y27632 抑制实验得到了验证。总之,这些发现强调了 Es-Vangl2 在稳定 HTB 完整性中的关键作用,其通过 Rock 信号通路调节 Eps8 介导的肌动蛋白重塑来稳定 HTB 完整性。