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Nuclear Shp2 directs normal embryo implantation via facilitating the ERα tyrosine phosphorylation by the Src kinase

机译:核Shp2通过促进Src激酶促进ERα酪氨酸磷酸化来指导正常胚胎植入

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摘要

Estrogen and progesterone coupled with locally produced signaling molecules are essential for embryo implantation. However, the hierarchical landscape of the molecular pathways that governs this process remains largely unexplored. Here we show that the protein tyrosine phosphatase Shp2, a positive transducer of RTK signaling, is predominately localized in the nuclei in the periimplantation mouse uterus. Uterine-specific deletion of Shp2 exhibits reduced progesterone receptor (PR) expression and progesterone resistance, which derails normal uterine receptivity, leading to complete implantation failure in mice. Notably, the PR expression defects are attributed to the limited estrogen receptor α (ERα) activation in uterine stroma. Further analysis reveals that nuclear Shp2, rather than cytosolic Shp2, promotes the ERα transcription activity. This function is achieved by enhancing the Src kinase-mediated ERα tyrosine phosphorylation, which facilitates ERα binding to Pgr promoter in an ERK-independent manner in periimplantation uteri. Besides uncovering a regulatory mechanism, this study could be clinically relevant to dysfunctional ERα-caused endometrial disorders in women.
机译:雌激素和孕酮以及局部产生的信号分子对胚胎植入至关重要。但是,支配这一过程的分子途径的层次结构在很大程度上尚待探索。在这里,我们显示蛋白质酪氨酸磷酸酶Shp2,RTK信号的阳性转导者,主要定位在植入后小鼠子宫的核中。 Shp2的子宫特异性缺失表现出降低的孕激素受体(PR)表达和孕激素抵抗性,这破坏了正常子宫的接受能力,导致小鼠完全植入失败。值得注意的是,PR表达缺陷归因于子宫基质中有限的雌激素受体α(ERα)激活。进一步的分析表明核Shp2而不是胞质Shp2促进ERα转录活性。该功能可通过增强Src激酶介导的ERα酪氨酸磷酸化来实现,该磷酸化促进ERα以独立于ERK的方式与植入前子宫的Pgr启动子结合。除了揭示调节机制外,该研究还可能与功能异常的ERα引起的子宫内膜疾病有关。

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