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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >HOXA10 inhibits Kruppel-like factor 9 expression in the human endometrial epithelium.
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HOXA10 inhibits Kruppel-like factor 9 expression in the human endometrial epithelium.

机译:HOXA10抑制人子宫内膜上皮中的Kruppel样因子9表达。

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Kruppel-like factor 9 (KLF9) is a zinc finger transcription factor that regulates estrogen and progesterone action by modulating the activity of progesterone receptor (PGR). The transition from proliferative to secretory endometrial epithelium involves loss of estrogen receptor/PGR expression and loss of direct response to sex steroids. HOXA10 partially mediates progesterone responsiveness in the endometrium. Here, we demonstrate that HOXA10 directly regulates KLF9 in endometrial epithelial cells and not in stromal cells. Immunohistochemistry performed on endometrial tissue obtained from normal, reproductive-age women revealed that KLF9 expression was decreased in the secretory phase of the menstrual cycle compared to the proliferative phase. In vitro, HOXA10 transfection of human endometrial epithelial cells (Ishikawa), but not stromal cells (HESC), resulted in a greater than 50% decrease in KLF9 mRNA and protein expression. Reporter constructs driven by the KLF9 promoter were repressed by cotransfection with HOXA10. Electrophoretic mobility shift assay was used to demonstrate direct binding of HOXA10 to the KLF9 promoter. Targeted mutation of the HOXA10-binding site in the KLF9 promoter resulted in loss of HOXA10 binding and loss of repression by HOXA10 in reporter assays. HOXA10 directly and selectively repressed KLF9 expression in endometrial epithelial cells. HOXA10 repression of KLF9 likely contributes to the loss of sex steroid responsiveness in secretory-phase endometrial epithelium.
机译:Kruppel样因子9(KLF9)是锌指转录因子,可通过调节孕激素受体(PGR)的活性来调节雌激素和孕激素的作用。从增生性子宫内膜上皮向分泌性子宫内膜上皮的转变涉及雌激素受体/ PGR表达的丧失和对性类固醇的直接反应的丧失。 HOXA10部分介导子宫内膜中的孕激素反应。在这里,我们证明HOXA10直接调节子宫内膜上皮细胞而不是基质细胞中的KLF9。从正常,生育年龄的妇女获得的子宫内膜组织进行的免疫组织化学分析显示,与增生期相比,月经周期的分泌期KLF9表达降低。在体外,HOXA10转染人子宫内膜上皮细胞(石川),而不是基质细胞(HESC),导致KLF9 mRNA和蛋白质表达降低超过50%。与HOXA10共转染可抑制KLF9启动子驱动的报告基因构建体。电泳迁移率变动分析用于证明HOXA10与KLF9启动子的直接结合。在报告基因分析中,KLF9启动子中HOXA10结合位点的靶向突变导致HOXA10结合丧失和HOXA10抑制。 HOXA10直接和选择性地抑制子宫内膜上皮细胞中KLF9的表达。 HOLFA10抑制KLF9可能有助于分泌期子宫内膜上皮性激素的反应性丧失。

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