首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Identification of a cAMP-response Element in the Regulator of G-protein Signaling-2 (RGS2) Promoter as a Key Cis-regulatory Element for RGS2 Transcriptional Regulation by Angiotensin II in Cultured Vascular Smooth Muscles
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Identification of a cAMP-response Element in the Regulator of G-protein Signaling-2 (RGS2) Promoter as a Key Cis-regulatory Element for RGS2 Transcriptional Regulation by Angiotensin II in Cultured Vascular Smooth Muscles

机译:G蛋白信号2(RGS2)启动子的调节器中的cAMP反应元件的鉴定是血管紧张素II在培养的血管平滑肌中RGS2转录调控的关键顺式调控元件。

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摘要

Mice deficient in regulator of G-protein signaling-2 (RGS2) have severe hypertension, and RGS2 genetic variations occur in hypertensive humans. A potentially important negative feedback loop in blood pressure homeostasis is that angiotensin II (Ang II) increases vascular smooth muscle cell (VSMC) RGS2 expression. We reported that Group VIA phospholipase A2 (iPLA2β) is required for this response (Xie, Z., Gong, M. C., Su, W., Turk, J., and Guo, Z. (2007) J. Biol. Chem. 282, 25278–25289), but the specific molecular causes and consequences of iPLA2β activation are not known. Here we demonstrate that both protein kinases C (PKC) and A (PKA) participate in Ang II-induced VSMC RGS2 mRNA up-regulation, and that actions of PKC and PKA precede and follow iPLA2β activation, respectively. Moreover, we identified a conserved cAMP-response element (CRE) in the murine RGS2 promoter that is critical for cAMP-response element-binding protein (CREB) binding and RGS2 promoter activation. Forskolin-stimulated RGS2 mRNA up-regulation is inhibited by CREB sequestration or specific disruption of the CREB-RGS2 promoter interaction, and Ang II-induced CREB phosphorylation and nuclear localization are blocked by iPLA2β pharmacologic inhibition or genetic ablation. Ang II-induced intracellular cyclic AMP accumulation precedes CREB phosphorylation and is diminished by inhibiting iPLA2, cyclooxygenase, or lipoxygenase. Moreover, three single nucleotide polymorphisms identified in hypertensive patients are located in the human RGS2 promoter CREB binding site. Point mutations corresponding to these single nucleotide polymorphisms interfere with stimulation of human RGS2 promoter activity by forskolin. Our studies thus delineate a negative feedback loop to attenuate Ang II signaling in VSMC with potential importance in blood pressure homeostasis and the pathogenesis of human essential hypertension.
机译:缺乏G蛋白信号传导2(RGS2)调节剂的小鼠患有严重的高血压,并且RGS2遗传变异发生在高血压的人中。血压动态平衡中潜在的重要负反馈回路是血管紧张素II(Ang II)增加血管平滑肌细胞(VSMC)RGS2的表达。我们报道了该反应需要VIA组磷脂酶A2(iPLA2β)(Xie,Z.,Gong,MC,Su,W.,Turk,J.,and Guo,Z.(2007)J.Biol.Chem.282 ,25278–25289),但iPLA2β激活的具体分子原因和后果尚不清楚。在这里,我们证明蛋白激酶C(PKC)和A(PKA)均参与Ang II诱导的VSMC RGS2 mRNA上调,并且PKC和PKA的作用分别在iPLA2β激活之前和之后。此外,我们在鼠RGS2启动子中鉴定了一个保守的cAMP反应元件(CRE),这对于cAMP反应元件结合蛋白(CREB)结合和RGS2启动子激活至关重要。 CREB螯合或CREB-RGS2启动子相互作用的特异性破坏抑制了Forskolin刺激的RGS2 mRNA的上调,而iPLA2β药理抑制或遗传消融作用阻止了Ang II诱导的CREB磷酸化和核定位。 Ang II诱导的细胞内环状AMP积累在CREB磷酸化之前,并通过抑制iPLA2,环氧合酶或脂氧合酶而减少。而且,在高血压患者中鉴定出的三个单核苷酸多态性位于人RGS2启动子CREB结合位点。对应于这些单核苷酸多态性的点突变干扰了福司可林对人RGS2启动子活性的刺激。因此,我们的研究描绘了一个负反馈回路,以减弱VSMC中的Ang II信号传导,这对血压稳态和人类原发性高血压的发病机制具有潜在的重要性。

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