camp特异性磷酸二酯酶对大鼠肾小球旁细胞肾素分泌的控制

U. Friis, B. Jensen, Shala Sethi, D. Andreasen, P. Hansen, O. Skøtt
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引用次数: 84

摘要

我们在离体大鼠肾小球旁(JG)细胞中验证了cGMP通过抑制camp特异性磷酸二酯酶3 (PDE3)刺激肾素释放的假设。此外,我们评估了PDE4在jg细胞功能中的作用。JG细胞表达PDE3A和PDE3B, PDE3抑制剂trequinsin增加细胞cAMP含量,增强forskolin诱导的cAMP形成,刺激培养和过度处理的JG细胞释放肾素。trequinin介导的肾素释放刺激被可渗透蛋白激酶A拮抗剂Rp-8-CPT-cAMPS抑制。PDE4C也有表达,PDE4抑制剂罗利普兰增强了细胞cAMP含量。在全细胞膜片钳实验中,用cAMP透析单个JG细胞导致细胞膜电容(Cm)的浓度依赖性双相变化,Cm在1 μ mol/L时显著增加,在10 μ mol/L时无净变化,在100 μ mol/L时下降。cGMP对Cm也有双重作用,浓度比cAMP高10倍。Trequinsin, milrinone和rolippram对Cm的作用与cAMP相似。trequinin、cAMP和cGMP在膜电位正时可使向外电流增强2- 3倍。cAMP、cGMP和trequinsin对Cm和细胞电流的影响通过rp -cAMP抑制蛋白激酶A而被消除。我们得出结论,PDE3和PDE4对cAMP的降解有助于调节JG细胞的肾素释放。我们的数据在细胞水平上提供了证据,cGMP刺激肾素释放涉及抑制PDE3,导致cAMP形成增强和cAMP敏感蛋白激酶的激活。
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Control of Renin Secretion From Rat Juxtaglomerular Cells by cAMP-Specific Phosphodiesterases
We tested the hypothesis that cGMP stimulates renin release through inhibition of the cAMP-specific phosphodiesterase 3 (PDE3) in isolated rat juxtaglomerular (JG) cells. In addition, we assessed the involvement of PDE4 in JG-cell function. JG cells expressed PDE3A and PDE3B, and the PDE3 inhibitor trequinsin increased cellular cAMP content, enhanced forskolin-induced cAMP formation, and stimulated renin release from incubated and superfused JG cells. Trequinsin-mediated stimulation of renin release was inhibited by the permeable protein kinase A antagonist Rp-8-CPT-cAMPS. PDE4C was also expressed, and the PDE4 inhibitor rolipram enhanced cellular cAMP content. Dialysis of single JG cells with cAMP in whole-cell patch-clamp experiments led to concentration-dependent, biphasic changes in cell membrane capacitance (Cm) with a marked increase in Cm at 1 &mgr;mol/L, no net change at 10 &mgr;mol/L, and a decrease at 100 &mgr;mol/L cAMP. cGMP also had a dual effect on Cm at 10-fold higher concentration compared with cAMP. Trequinsin, milrinone, and rolipram mimicked the effect of cAMP on Cm. Trequinsin, cAMP, and cGMP enhanced outward current 2- to 3-fold at positive membrane potentials. The effects of cAMP, cGMP, and trequinsin on Cm and cell currents were abolished by inhibition of protein kinase A with Rp-cAMPs. We conclude that degradation of cAMP by PDE3 and PDE4 contributes to regulation of renin release from JG cells. Our data provide evidence at the cellular level that stimulation of renin release by cGMP involves inhibition of PDE3 resulting in enhanced cAMP formation and activation of the cAMP sensitive protein kinase.
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