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首页> 外文期刊>Reproductive Biology and Endocrinology >PKCepsilon and an increase in intracellular calcium concentration are necessary for PGF2alpha to inhibit LH-stimulated progesterone secretion in cultured bovine steroidogenic luteal cells
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PKCepsilon and an increase in intracellular calcium concentration are necessary for PGF2alpha to inhibit LH-stimulated progesterone secretion in cultured bovine steroidogenic luteal cells

机译:PKCepsilon和细胞内钙浓度的增加对于PGF2alpha抑制培养的牛类固醇生成黄体细胞中LH刺激的孕激素分泌是必要的

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The hypotheses that PKCepsilon is necessary for: 1) PGF2alpha to inhibit LH-stimulated progesterone (P4) secretion, and 2) for the expression of key prostaglandin synthesizing/metabolizing enzymes were tested in bovine luteal cells in which PKCepsilon expression had been ablated using a validated siRNA protocol. Steroidogenic cells from Day -6 bovine corpus luteum (CL) were isolated and transfected to reduce PKCepsilon expression after 48, 72 and 96 h. A third tested hypothesis was that an increase in intracellular calcium concentration ([Ca(2+)]i) is the cellular mechanism through which PGF2alpha inhibits luteal progesterone. The hypothesis was tested with two pharmacological agents. In the first test, the dose-dependent effects on raising the [Ca(2+)]i with the ionophore, A23187, on basal and LH-stimulated P4 secretion in cells collected from early (Day -4) and mid-cycle (Day -10) bovine CL was examined. In the second test, the ability of PGF2alpha to inhibit LH-stimulated P4 secretion in Day-10 luteal cells was examined under conditions in which an elevation in [Ca(2+)]i had been buffered by means of the intracellular calcium chelator, Bapta-AM. PKCepsilon expression was reduced 65 and 75% by 72 and 96 h after transfection, respectively. In cells in which PKCepsilon expression was ablated by 75%, the inhibitory effect of PGF2alpha on LH-stimulated P4 secretion was only 29% lower than in the LH-stimulated group. In contrast, it was reduced by 75% in the group where PKCepsilon expression had not been reduced (P
机译:PKCepsilon对于以下目的必要的假设:1)在已使用ab消除了PKCepsilon表达的牛黄体细胞中测试了PGF2alpha抑制LH刺激的孕激素(P4)分泌,以及2)关键前列腺素合成/代谢酶的表达。经过验证的siRNA协议。分离来自第-6天牛黄体(CL)的类固醇激素细胞,并在48、72和96小时后转染以降低PKCepsilon表达。第三个检验的假设是细胞内钙浓度([Ca(2 +)] i)的增加是PGF2alpha抑制黄体孕酮的细胞机制。该假设用两种药理学试剂进行了检验。在第一个测试中,用离子载体A23187升高[Ca(2 +)] i对从早期(第--4天)和中期(第-天)收集的细胞中的基础和LH刺激的P4分泌具有剂量依赖性。第-10天)检查牛CL。在第二项测试中,在通过细胞内钙螯合剂缓冲[Ca(2 +)] i升高的条件下,检查了PGF2alpha抑制Day-10黄体细胞中LH刺激的P4分泌的能力, Bapta-AM。转染后72和96小时,PKCepsilon表达分别降低65和75%。在PKCepsilon表达减少了75%的细胞中,PGF2alpha对LH刺激的P4分泌的抑制作用仅比LH刺激组低29%。相反,在PKCepsilon表达未降低的组中,其降低了75%(P

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