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首页> 外文期刊>Reproductive sciences >The Notch Family Transcription Factor, RBPJ kappa, Modulates Glucose Transporter and Ovarian Steroid Hormone Receptor Expression During Decidualization
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The Notch Family Transcription Factor, RBPJ kappa, Modulates Glucose Transporter and Ovarian Steroid Hormone Receptor Expression During Decidualization

机译:缺口家族转录因子,RBPJκA,在蜕皮化期间调节葡萄糖转运蛋白和卵巢类固醇激素受体表达

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During decidualization, endometrial stromal cells differentiate into a secretory phenotype to modulate the uterine microenvironment and promote embryo implantation. This highly metabolic process relies on ovarian steroid receptors and glucose transporters. Canonical Notch signaling is mediated by the transcription factor Recombination Signal Binding Protein for Immunoglobulin Kappa J Region (RBPJ). Loss of RBPJ in the mouse uterus (Pgr(cre/+)Rbpj(flox/flox); Rbpj c-KO) results in subfertility in part due to an abnormal uterine-embryonic axis during implantation and, as described herein, decidualization failure. Induced in vivo decidualization in Rbpj c-KO mice was impaired with the downregulation of decidual markers and decreased progesterone receptor (Pgr) signaling. Consistent with in vivo mouse data, RBPJ knockdown during in vitro Human uterine fibroblast (HuF) cell decidualization results in the reduced expression of decidual marker genes along with PGR. Expression of the glucose transporter, SLC2A1, was decreased in the RBPJ-silenced HuF cells, which corresponded to decreased Slc2a1 in the secondary decidual zone of Rbpj c-KO mouse uteri. Exogenous administration of pyruvate, which bypasses the need for glucose, rescues PRL expression in RBPJ-deficient HuF cells. In summary, Notch signaling through RBPJ controls both ovarian steroid receptor PGR and glucose transporter SLC2A1 expression during decidualization, and this dysregulation likely contributes to embryo implantation failure.
机译:在蜕膜中,子宫内膜中间细胞分化为分泌表型以调节子宫微环境并促进胚胎植入。这种高度代谢过程依赖于卵巢类固醇受体和葡萄糖转运蛋白。规范凹凸信号传导由转录因子重组信号结合蛋白介导用于免疫球蛋白Kappa J区域(RBPJ)。在小鼠子宫(PGR(CRE / +)RBPJ(FLOX / FLOX)中的RBPJ丧失; RBPJ C-KO)导致植入过程中的子宫胚轴异常,并且如本文所述,蜕皮病发生故障。在RBPJ C-KO小鼠中诱导体内蜕皮化,随着蜕膜标记的下调和孕酮受体(PGR)信号传导减少。在体外小鼠数据中一致,在体外人子宫内成纤维细胞(HUF)细胞蜕皮中的RBPJ敲低导致耐候标志物基因和PGR的表达降低。葡萄糖转运蛋白SLC2A1的表达在RBPJ沉默的HUF细胞中降低,其对应于RBPJ C-KO小鼠UTERI的次级蜕膜区中的SLC2A1降低。外源给予丙酮酸盐,其绕过葡萄糖的需要,在RBPJ缺陷的HUF细胞中拯救PRL表达。总之,通过RBPJ的凹口信号传导控制卵巢类固醇受体PGR和葡萄糖转运蛋白SLC2A1表达在携带过程中,这种诱饵可能有助于胚胎植入失败。

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