首页> 外文期刊>The Journal of Reproduction and Development >Dickkopf-1 Expression During Early Bovine Placentation and Its Downregulation in Somatic Cell Nuclear Transfer (SCNT) Pregnancies
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Dickkopf-1 Expression During Early Bovine Placentation and Its Downregulation in Somatic Cell Nuclear Transfer (SCNT) Pregnancies

机译:Dickkopf-1早期胎盘胎盘表达及其在体细胞核移植(SCNT)妊娠中的下调。

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摘要

The precise role of Dickkopf-1 (Dkk-1) during early bovine trophoblast development and subsequent placentation is not fully understood. Using somatic cell nuclear transfer (SCNT) generated pregnancies as a model of poor placentation we have found that mean levels of Dkk-1 mRNA were 1.5 fold lower in SCNT fetal cotyledon tissue at Day 50 of gestation than those resulting from artificial insemination (AI.) and 2 fold lower at Days 100 and 150 (P<0.004). Dkk-1 expression in cotyledon tissue was localized by in situ hybridization to fetal binucleate cells (BNCs). Examining conceptuses from blastocyst stage we show that Dkk-1. mRNA was first evident between Days 15-20 of gestation in trophoblast tissue (when BNCs first appear) prior to the initial expression of the BNC specific bovine placental lactogen (bPL) on Day 20. Dkk-1 mRNA levels were higher than bPL in trophoblast tissue throughout the pre-attachment period (Days 24-31), however, this reversed during cotyledon development with only a subset of the bPL immunoreactive BNCs also containing Dkk-1 protein, suggesting a specific role for Dkk-1 during early placentation. One function of Dkk-1 is as an antagonist of the Wnt signaling pathway and, although Wnt5A and Wnt7A mRNAs were expressed in Day 50 bovine cotyledons, their expression levels were similar between AI and SCNT. In addition, the nuclear localization of beta-catenin, which is an indicator of activation of the Wnt pathway, was also similar between AT and SCNT cotyledon tissue. Transcriptional control of Dkk-1 was not due to changes in DNA methylation levels in the promoter region as methylation levels were no different when comparing AT and SCNT tissues. The decreased expression of Dkk-1 in SCNT cotyledons that are prone to abnormal placentation suggests a role in cotyledon formation but the mechanism and regulatory control is yet to be revealed.
机译:Dickkopf-1(Dkk-1)在早期牛滋养细胞发育和随后的胎盘形成过程中的确切作用尚不完全清楚。使用体细胞核移植(SCNT)产生的妊娠作为不良胎盘妊娠的模型,我们发现妊娠50天时SCNT胎儿子叶组织中Dkk-1 mRNA的平均水平比人工授精(AI。)低1.5倍。 ),在第100和150天时降低了2倍(P <0.004)。子叶组织中的Dkk-1表达通过与胎儿双核细胞(BNC)的原位杂交而定位。从胚泡期检查conceptuses,我们显示了Dkk-1。在第20天BNC特异性牛胎盘催乳素(bPL)最初表达之前,滋养细胞组织中妊娠15-20天(首次出现BNC时)的mRNA最先出现。Dkk-1mRNA水平高于滋养细胞中bPL的水平。然而,在子叶发育过程中,这种情况在整个附着前期(第24-31天)都发生了逆转,仅一部分子集的bPL免疫反应性BNC也含有Dkk-1蛋白,提示Dkk-1在早期胎盘形成过程中具有特殊作用。 Dkk-1的一种功能是作为Wnt信号通路的拮抗剂,尽管Wnt5A和Wnt7A mRNA在第50天牛子叶中表达,但它们的表达水平在AI和SCNT之间相似。此外,AT-和SCNT子叶组织之间的β-catenin核定位是Wnt途径激活的指标,也很相似。 Dkk-1的转录控制不是由于启动子区域DNA甲基化水平的变化,因为在比较AT和SCNT组织时甲基化水平没有差异。 DCNT-1在SCNT子叶中易于发生异常胎盘表达的降低表明其在子叶形成中的作用,但其机制和调控控制尚待揭示。

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