【2h】

Conditional deletion of

机译:有条件的删除

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摘要

WNT proteins are widely expressed in the murine ovaries. WNTLESS is a regulator essential for all WNTs secretion. However, the complexity and overlapping expression of WNT signaling cascades have prevented researchers from elucidating their function in the ovary. Therefore, to determine the overall effect of WNT on ovarian development, we depleted the Wntless gene in oocytes and granulosa cells. Our results indicated no apparent defect in fertility in oocyte-specific Wntless knockout mice. However, granulosa cell (GC) specific Wntless deletion mice were subfertile and recurred miscarriages. Further analysis found that GC-specific Wntless knockout mice had noticeably smaller corpus luteum (CL) in the ovaries than control mice, which is consistent with a significant reduction in luteal cell marker gene expression and a noticeable increase in apoptotic gene expression. Also, the deletion of Wntless in GCs led to a significant decrease in ovarian HCGR and β-Catenin protein levels. In conclusion, Wntless deficient oocytes had no discernible impact on mouse fertility. In contrast, the loss of Wntless in GCs caused subfertility and impaired CL formation due to reduced LHCGR and β-Catenin protein levels, triggering GC apoptosis.
机译:WNT蛋白在鼠卵巢中广泛表达。 Wntless是一个稳健机,适用于所有WNTs分泌物。然而,Wnt信号传导级联的复杂性和重叠表达已经阻止了研究人员在卵巢中阐明了它们的功能。因此,为了确定WNT对卵巢发育的整体效果,我们耗尽了卵母细胞和颗粒细胞中的Wntless基因。我们的结果表明卵母细胞特异性Wnt​​less Knockout小鼠中生育能力没有明显的缺陷。然而,颗粒细胞(GC)特异性Wnt​​less删除小鼠是底部的和重复流产。进一步的分析发现,GC特异性Wnt​​less敲除小鼠比对照小鼠在卵巢中具有明显较小的粒子(Cl),这与患有患者细胞标记基因表达的显着降低以及凋亡基因表达的显着增加一致。此外,在GCS中删除WNTLESS导致卵巢HCRG和β-连环蛋白蛋白水平的显着降低。总之,Wntless缺乏卵母细胞对小鼠生育的影响没有明显的影响。相反,由于降低的LHCGR和β-连环蛋白蛋白水平,GNTRESS在GNT的丧失引起了体育率和CL形成受损,引发GC凋亡。

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