首页> 美国卫生研究院文献>Molecular Endocrinology >Interferon Tau Regulates PGF2α Release from the Ovine Endometrial Epithelial Cells via Activation of Novel JAK/EGFR/ERK/EGR-1 Pathways
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Interferon Tau Regulates PGF2α Release from the Ovine Endometrial Epithelial Cells via Activation of Novel JAK/EGFR/ERK/EGR-1 Pathways

机译:干扰素Tau通过激活新的JAK / EGFR / ERK / EGR-1途径调节从绵羊子宫内膜上皮细胞释放的PGF2α

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摘要

In ruminants, pulsatile release of prostaglandin F2α (PGF2α) from the endometrium is transported to the ovary and induces luteolysis thereby allowing new estrous cycle. Interferon tau (IFNT), a type 1 IFN secreted by the trophoblast cells of the developing conceptus, acts on endometrial luminal epithelial (LE) cells and inhibits pulsatile release of PGF2α and establishes pregnancy. One of the unknown mechanisms is that endometrial pulsatile release of PGF2α is inhibited whereas basal release of PGF2α is increased in pregnant compared with nonpregnant sheep. We have recently found that pulsatile release of PGF2α from the endometrium is regulated by prostaglandin transporter (PGT)-mediated mechanisms. We hypothesize that modulation in the endometrial pulsatile vs. basal release of PGF2α likely requires PGT-mediated selective transport, and IFNT interacts with PGT protein and modulates pulsatile vs. basal release of PGF2α. The new findings of the present study are: 1) IFNT activates novel JAK-SRC kinase-EGFR-RAS-RAF-ERK1/2-early growth response (EGR)-1 signaling module in LE cells; 2) IFNT increases interactions between PGT and ERK1/2 or EGR-1 proteins and alters phosphorylation of PGT protein; 3) IFNT precludes action of protein kinase C and Ca2+ on PGT function; and 4) IFNT inhibits 80% PGT-mediated but not 20% simple diffusion-mediated release of PGF2α from the endometrial LE cells through this novel signaling module. The results of the present study provide important new insights on IFNT signaling and molecular control of PGT-mediated release of PGF2α and unravel the underlying mechanisms responsible for the increased basal release of PGF2α at the time of establishment of pregnancy in ruminants.
机译:在反刍动物中,前列腺素F2α(PGF2α)从子宫内膜的脉冲释放被转运至卵巢并诱导黄体溶解,从而实现新的动情周期。干扰素tau(IFNτ)是发育中概念的滋养层细胞分泌的1型IFN,作用于子宫内膜腔上皮(LE)细胞并抑制PGF2α的脉动释放并确立妊娠。未知机制之一是,与未怀孕的绵羊相比,孕妇的子宫内膜PGF2α脉动释放受到抑制,而PGF2α的基础释放增加。我们最近发现,PGF2α从子宫内膜的脉冲释放受前列腺素转运蛋白(PGT)介导的机制调节。我们假设调节子宫内膜搏动性与基础释放的PGF2α可能需要PGT介导的选择性转运,并且IFNτ与PGT蛋白相互作用并调节搏动性与PGF2α的基础释放。本研究的新发现是:1)IFNτ激活LE细胞中新型的JAK-SRC激酶-EGFR-RAS-RAF-ERK1 / 2-早期生长反应(EGR)-1信号模块。 2)IFNτ增加了PGT和ERK1 / 2或EGR-1蛋白之间的相互作用,并改变了PGT蛋白的磷酸化; 3)IFNτ排除了蛋白激酶C和Ca 2 + 对PGT功能的作用; 4)IFNτ通过这种新型信号传导模块抑制了80%PGT介导的PGF2α从子宫内膜LE细胞中的释放,但没有抑制20%的简单扩散介导的PGF2α释放。本研究的结果为IFNτ信号传导和PGT介导的PGF2α释放的分子控制提供了重要的新见解,并揭示了反刍动物怀孕时PGF2α的基础释放增加的潜在机制。

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