首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Angiotensin II induces oscillations of intracellular calcium and blocks anomalous inward rectifying potassium current in mouse renal juxtaglomerular cells.
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Angiotensin II induces oscillations of intracellular calcium and blocks anomalous inward rectifying potassium current in mouse renal juxtaglomerular cells.

机译:血管紧张素II诱导细胞内钙的振荡并阻断小鼠肾小管肾细胞中异常向内的整流钾电流。

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摘要

Simultaneous patch-clamp and fura-2 measurements were used to investigate the electrical properties and receptor-mediated changes of intracellular calcium in renal juxtaglomerular cells. Here we report the presence of voltage-activated inward and outward rectifying potassium currents and the inhibition of the anomalous inward rectifying potassium current by angiotensin II (ANG-II). This action of ANG-II was mimicked by guanosine 5'-[gamma-thio]triphosphate but not by cAMP, cGMP, inositol 1,4,5-trisphosphate, or phorbol ester, suggesting that ANG-II inhibits the potassium channel directly by means of a guanine nucleotide-binding regulatory protein or by means of an unusual type of second messenger. Blocking of the inward rectifier was paralleled by membrane depolarization, but we obtained no evidence for calcium entry due to voltage-gated calcium channels in juxtaglomerular cells. Instead, under voltage clamp, ANG-II and guanosine 5'-[gamma-thio]triphosphate induced release of calcium from intracellular stores followed by a sustained phase of transmembrane calcium influx and oscillations of intracellular Ca2+ concentrations. Changes in intracellular Ca2+ concentrations were found to depend on the extracellular Ca concentration--i.e., the sustained elevation was abolished in absence of extracellular Ca, and the frequency of repetitive calcium release was directly related to the extracellular concentration of calcium. Moreover, an elevation of extracellular Ca concentration by itself induced release of intracellular calcium in the absence of other stimuli. Changes in intracellular Ca2+ concentrations were accompanied by prominent calcium-activated chloride currents, and this mechanism is inferred to be responsible for the inhibitory role of calcium in renin secretion. Intracellular application of cAMP but no cGMP inhibited ANG-II and guanosine 5'-[gamma-thio]triphosphate induced calcium mobilization in juxtaglomerular cells, being consistent with the facilitatory effects of elevated cAMP levels of renin release. The frequency of ANG-II induced oscillations was also markedly attenuated at depolarized membrane potentials suggesting effective negative feedback control of ANG-II-induced depolarization on repetitive Ca2+ transients induced by the hormone.
机译:同时进行膜片钳和呋喃2的测量,以研究肾小球细胞中电特性和受体介导的细胞内钙的变化。在这里我们报告电压激活的向内和向外整流钾电流的存在和血管紧张素II(ANG-II)对异常向内整流的钾电流的抑制作用。鸟苷5'-γ-硫代三磷酸模仿了ANG-II的这种作用,但cAMP,cGMP,肌醇1,4,5-三磷酸或佛波酯未模仿此作用,表明ANG-II可通过以下方式直接抑制钾通道鸟嘌呤核苷酸结合调节蛋白的手段或不寻常类型的第二信使的手段。内向整流器的阻滞与膜去极化平行,但由于在肾小球细胞中存在电压门控性钙通道,因此我们没有钙进入的证据。取而代之的是,在电压钳制下,ANG-II和鸟苷5'-γ-硫代三磷酸诱导钙从细胞内储存中释放,随后是跨膜钙流入的持续阶段和细胞内Ca 2+浓度的振荡。发现细胞内Ca2 +浓度的变化取决于细胞外Ca浓度-即在不存在细胞外Ca的情况下消除了持续升高,并且重复释放钙的频率与细胞外钙的浓度直接相关。此外,在没有其他刺激的情况下,细胞外钙浓度的升高本身会诱导细胞内钙的释放。细胞内Ca 2+浓度的变化伴随着显着的钙激活的氯离子流,并且据推测该机制是钙对肾素分泌的抑制作用的原因。胞内应用cAMP但没有cGMP抑制ANG-II和鸟苷5'-γ-硫代三磷酸诱导近肾小球细胞钙动员,这与cAMP水平升高促进肾素释放的作用相一致。在去极化的膜电位下,ANG-II诱导的振荡频率也显着衰减,表明在激素诱导的重复性Ca2 +瞬变上,有效的负反馈控制了ANG-II诱导的去极化。

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