Wang Wei, Taylor Robert N, Bagchi Indrani C, Bagchi Milan K
Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Mol Endocrinol. 2012 Dec;26(12):2016-30. doi: 10.1210/me.2012-1169. Epub 2012 Oct 24.
During each menstrual cycle, the human uterus undergoes a unique transformation, known as decidualization, which involves endometrial stromal proliferation and differentiation. During this process, the stromal cells are transformed into decidual cells, which produce factors that prepare the uterus for potential embryo implantation. We previously identified the transcription factor CCAAT/enhancer-binding protein (C/EBP)β as a regulator of endometrial stromal proliferation and differentiation in mice. In this study, we addressed the role of C/EBPβ in human endometrial decidualization. Using small interfering RNA targeted to C/EBPβ mRNA, we demonstrated that C/EBPβ controls the proliferation of primary human endometrial stromal cells (HESCs) by regulating the expression of several key cell cycle-regulatory factors during the G(1)-S phase transition. Additionally, loss of C/EBPβ expression blocked the differentiation of HESCs in response to estrogen, progesterone, and cyclic AMP. Gene expression profiling of normal and C/EBPβ-deficient HESCs revealed that the receptor for the cytokine IL-11 and its downstream signal transducer signal transducer and activator of transcription 3 (STAT3) are targets of regulation by C/EBPβ. Chromatin immunoprecipitation analysis indicated that C/EBPβ controls the expression of STAT3 gene by directly interacting with a distinct regulatory sequence in its 5'-flanking region. Attenuation of STAT3 mRNA expression in HESCs resulted in markedly reduced differentiation of these cells, indicating an important role for STAT3 in decidualization. Gene expression profiling, using STAT3-deficient HESCs, showed an extensive overlap of pathways downstream of STAT3 and C/EBPβ during stromal cell differentiation. Collectively, these findings revealed a novel functional link between C/EBPβ and STAT3 that is a critical regulator of endometrial differentiation in women.
在每个月经周期中,人类子宫会经历一种独特的转变,即蜕膜化,这涉及子宫内膜基质的增殖和分化。在此过程中,基质细胞转化为蜕膜细胞,后者产生一些因子,为潜在的胚胎着床准备子宫。我们之前已确定转录因子CCAAT/增强子结合蛋白(C/EBP)β是小鼠子宫内膜基质增殖和分化的调节因子。在本研究中,我们探讨了C/EBPβ在人类子宫内膜蜕膜化中的作用。使用靶向C/EBPβ mRNA的小干扰RNA,我们证明C/EBPβ通过在G(1)-S期转变过程中调节几种关键细胞周期调节因子的表达来控制原代人子宫内膜基质细胞(HESC)的增殖。此外,C/EBPβ表达缺失会阻断HESC对雌激素、孕激素和环磷酸腺苷的分化反应。正常和C/EBPβ缺陷型HESC的基因表达谱分析表明,细胞因子IL-11的受体及其下游信号转导子信号转导和转录激活因子3(STAT3)是C/EBPβ的调控靶点。染色质免疫沉淀分析表明,C/EBPβ通过直接与STAT3基因5'-侧翼区域的一个独特调控序列相互作用来控制其表达。HESC中STAT3 mRNA表达的减弱导致这些细胞的分化明显减少,表明STAT3在蜕膜化中起重要作用。使用STAT3缺陷型HESC的基因表达谱显示,在基质细胞分化过程中,STAT3和C/EBPβ下游的通路有广泛重叠。总的来说,这些发现揭示了C/EBPβ和STAT3之间一种新的功能联系,这是女性子宫内膜分化的关键调节因子。