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Interaction of Adenosine 3′5′-Cyclic Monophosphate and Tumor Necrosis Factor-α on Serum Amyloid A3 Expression in Mouse Granulosa Cells: Dependence on CCAAT-Enhancing Binding Protein-β Isoform

机译:腺苷35-环一磷酸与肿瘤坏死因子-α相互作用对小鼠颗粒细胞血清淀粉样蛋白A3表达的影响:依赖于CCAAT增强结合蛋白-β亚型

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摘要

TNFα is an inflammatory-related cytokine that has inhibitory effects on gonadotropin- and cAMP-stimulated steroidogenesis and folliculogenesis. Because ovulation is an inflammatory reaction and TNF specifically induces serum amyloid A3 (SAA3) in mouse granulosa cells, the effect of cAMP on TNF-induced SAA3 promoter activity, mRNA and protein was investigated. Granulosa cells from immature mice were cultured with TNF and/or cAMP. TNF increased SAA3 promoter activity, mRNA, and protein, which were further increased by cAMP. cAMP alone increased SAA3 promoter activity, but SAA3 mRNA and protein remained undetectable. Thus, there appeared to be different mechanisms by which TNF and cAMP regulated SAA3 expression. SAA3 promoters lacking a nuclear factor (NF)-κB-like site or containing its mutant were not responsive to TNF but were responsive to cAMP. Among four CCAAT-enhancing binding protein (C/EBP) sites in the SAA3 promoter, the C/EBP site nearest the NF-κB-like site was required for TNF-induced SAA3. The C/EBP site at −75/−67 was necessary for responsiveness to cAMP. Dominant-negative C/EBP and cAMP response element-binding protein or short interfering RNA of C/EBPβ blocked TNF- or cAMP-induced SAA3 promoter activity. The combination of TNF and cAMP increased C/EBPβ protein above that induced by TNF or cAMP alone. Thus, cAMP in combination with TNF specifically induced C/EBPβ protein, leading to enhanced SAA3 expression but requiring NF-κB in mouse granulose cells. In addition, like TNF, SAA inhibited cAMP-induced estradiol accumulation and CYP19 levels. These data indicate SAA may play a role in events occurring during the ovulation process.
机译:TNFα是一种与炎症有关的细胞因子,对促性腺激素和cAMP刺激的类固醇生成和卵泡生成具有抑制作用。由于排卵是一种炎症反应,TNF在小鼠颗粒细胞中特异性诱导血清淀粉样蛋白A3(SAA3),因此研究了cAMP对TNF诱导的SAA3启动子活性,mRNA和蛋白质的影响。用TNF和/或cAMP培养未成熟小鼠的颗粒细胞。 TNF增加了SAA3启动子的活性,mRNA和蛋白质,而cAMP进一步增加了这些活性。单独使用cAMP可以增加SAA3启动子的活性,但是SAA3 mRNA和蛋白质仍然无法检测到。因此,TNF和cAMP调节SAA3表达的机制似乎不同。缺少核因子(NF)-κB样位点或包含其突变体的SAA3启动子对TNF无反应,但对cAMP有反应。在SAA3启动子中的四个CCAAT增强结合蛋白(C / EBP)位点中,TNF诱导的SAA3需要最接近NF-κB样位点的C / EBP位点。对于cAMP的响应,在-75 / -67处的C / EBP位点是必需的。显性阴性的C / EBP和cAMP反应元件结合蛋白或C /EBPβ的短干扰RNA阻断了TNF或cAMP诱导的SAA3启动子活性。 TNF和cAMP的结合使C /EBPβ蛋白高于单独由TNF或cAMP诱导的蛋白。因此,cAMP与TNF结合特异性诱导C /EBPβ蛋白,导致SAA3表达增强,但在小鼠颗粒细胞中需要NF-κB。此外,与TNF一样,SAA抑制cAMP诱导的雌二醇积累和CYP19水平。这些数据表明SAA可能在排卵过程中发生的事件中起作用。

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