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Does murine spermatogenesis require WNT signalling? A lesson from Gpr177 conditional knockout mouse models

机译:小鼠精子发生是否需要WNT信号传导? Gpr177条件基因剔除小鼠模型的教训

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摘要

Wingless-related MMTV integration site (WNT) proteins and several other components of the WNT signalling pathway are expressed in the murine testes. However, mice mutant for WNT signalling effector β-catenin using different Cre drivers have phenotypes that are inconsistent with each other. The complexity and overlapping expression of WNT signalling cascades have prevented researchers from dissecting their function in spermatogenesis. Depletion of the Gpr177 gene (the mouse orthologue of Drosophila Wntless), which is required for the secretion of various WNTs, makes it possible to genetically dissect the overall effect of WNTs in testis development. In this study, the Gpr177 gene was conditionally depleted in germ cells (Gpr177flox/flox, Mvh-Cre; Gpr177flox/flox, Stra8-Cre) and Sertoli cells (Gpr177flox/flox, Amh-Cre). No obvious defects in fertility and spermatogenesis were observed in these three Gpr177 conditional knockout (cKO) mice at 8 weeks. However, late-onset testicular atrophy and fertility decline in two germ cell-specific Gpr177 deletion mice were noted at 8 months. In contrast, we did not observe any abnormalities of spermatogenesis and fertility, even in 8-month-old Gpr177flox/flox, Amh-Cre mice. Elevation of reactive oxygen species (ROS) was detected in Gpr177 cKO germ cells and Sertoli cells and exhibited an age-dependent manner. However, significant increase in the activity of Caspase 3 was only observed in germ cells from 8-month-old germ cell-specific Gpr177 knockout mice. In conclusion, GPR177 in Sertoli cells had no apparent influence on spermatogenesis, whereas loss of GPR177 in germ cells disrupted spermatogenesis in an age-dependent manner via elevating ROS levels and triggering germ cell apoptosis.
机译:Wingless相关的MMTV整合位点(WNT)蛋白和WNT信号通路的其他几个组成部分在小鼠睾丸中表达。但是,使用不同的Cre驱动程序突变为WNT信号转导效应子β-catenin的小鼠具有彼此不一致的表型。 WNT信号级联的复杂性和重叠表达使研究人员无法剖析其在精子发生中的功能。 Gpr177基因(果蝇Wntless的小鼠直系同源物)的缺失是分泌各种WNT所必需的,因此有可能在遗传上解剖WNT在睾丸发育中的整体作用。在这项研究中,Gpr177基因在生殖细胞(Gpr177 flox / flox ,Mvh-Cre; Gpr177 flox / flox ,Stra8-Cre)和睾丸支持细胞中有条件地耗竭。 Gpr177 flox / flox ,Amh-Cre)。在这三只Gpr177条件性基因敲除(cKO)小鼠中,在8周时未观察到生育力和精子发生的明显缺陷。但是,在8个月时注意到两只生殖细胞特异性Gpr177缺失小鼠的晚发性睾丸萎缩和生育力下降。相比之下,即使在8个月大的Gpr177 Amh-Cre小鼠中,我们也没有观察到任何精子发生和生育能力的异常。在Gpr177 cKO生殖细胞和支持细胞中检测到活性氧(ROS)升高,并显示出年龄依赖性。但是,仅在8个月大的生殖细胞特异性Gpr177基因敲除小鼠的生殖细胞中观察到Caspase 3活性的显着增加。总之,Sertoli细胞中的GPR177对精子发生没有明显影响,而生殖细胞中GPR177的丢失则通过升高ROS水平和触发生殖细胞凋亡,以年龄依赖的方式破坏了精子发生。

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