首页> 外文期刊>Molecular Human Reproduction >Regulation of 3β-hydroxysteroid dehydrogenase type 1 and type 2 gene expression and function in the human ovarian surface epithelium by cytokines
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Regulation of 3β-hydroxysteroid dehydrogenase type 1 and type 2 gene expression and function in the human ovarian surface epithelium by cytokines

机译:细胞因子对人卵巢表面上皮细胞中3β-羟类固醇脱氢酶1型和2型基因表达和功能的调节

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The human ovarian surface epithelium (hOSE) is a squamous-to-cuboidal layer that surrounds the ovary. hOSE undergoes injury and repair cycles as a result of ovulation-induced inflammation, an event relevant to the development of epithelial ovarian cancer (EOC). Locally produced steroids mediate the response to inflammation. 3β-Hydroxysteroid dehydrogenase (3β-HSD) drives the intracrine generation of progestogens and androgens that potentially affect cell survival and proliferation. We therefore investigated the regulation of 3β-HSD along with downstream steroid signalling in hOSE. Double immunofluorescence of cultured primary hOSE cells confirmed the expression of 3β-HSD protein Interleukin (IL). IL-1α treatment of primary cells to mimic ovulation-associated inflammation suppressed 3β-HSD1 expression and stimulated 3β-HSD2 mRNA (P 0.001), without affecting total 3β-HSD protein and activity or androgen or progesterone receptor (PR) mRNA levels. Conversely, IL-4 as a proxy for a post-ovulatory healing cytokine increased both 3β-HSD transcripts, total protein and activity (P 0.01). IL-4 also suppressed androgen receptor expression (P 0.01) without affecting that of the PR, thereby potentially sustaining both progesterone biosynthesis and its underlying signalling in the ovarian surface. 3β-HSD protein was immunodetectable in primary ascites of women who were diagnosed with EOC but both mRNA transcripts were diminished relative to normal cells (P 0.05). Notably, this difference was countered by IL-4 treatment (P 0.01). We conclude that stimulation by IL-4 could be physiologically relevant to post-ovulatory ovarian healing and suggest a novel therapeutic strategy for the activation of progesterone-associated apoptosis in ovarian cancer. Also, our results suggest an attenuation of 3β-HSD expression in EOC although further studies are required for confirmation.
机译:人卵巢表面上皮(hOSE)是围绕卵巢的鳞状到立方的层。由于排卵诱导的炎症,hOSE经历了损伤和修复周期,这一事件与上皮性卵巢癌(EOC)的发生有关。局部产生的类固醇介导对炎症的反应。 3β-羟基类固醇脱氢酶(3β-HSD)驱动着孕激素和雄激素的内分泌生成,这可能影响细胞存活和增殖。因此,我们研究了hOSE中3β-HSD的调控以及下游类固醇信号传导。培养的原代hOSE细胞的双重免疫荧光证实了3β-HSD蛋白白介素(IL)的表达。 IL-1α处理原代细胞以模拟与排卵相关的炎症可抑制3β-HSD1表达并刺激3β-HSD2mRNA(P <0.001),而不会影响3β-HSD的总蛋白和活性或雄激素或孕激素受体(PR)的mRNA水平。相反,作为排卵后愈​​合细胞因子的替代物,IL-4增加了3β-HSD转录本,总蛋白和活性(P <0.01)。 IL-4在不影响PR的情况下也抑制了雄激素受体的表达(P <0.01),从而潜在地维持了孕酮的生物合成及其在卵巢表面的潜在信号传导。在诊断患有EOC的女性原发性腹水中可检测到3β-HSD蛋白,但相对于正常细胞,这两个mRNA转录物均减少(P <0.05)。值得注意的是,这种差异被IL-4治疗所抵消(P <0.01)。我们得出结论,IL-4刺激可能与排卵后卵巢愈合在生理上有关,并提出了一种新的卵巢癌孕激素相关凋亡激活的治疗策略。同样,我们的结果表明EOC中3β-HSD表达的减弱,尽管需要进一步的研究来确认。

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