首页> 美国卫生研究院文献>The Journal of General Physiology >Regulation of Ca2+ current in frog ventricular cardiomyocytes by guanosine 5-triphosphate analogues and isoproterenol
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Regulation of Ca2+ current in frog ventricular cardiomyocytes by guanosine 5-triphosphate analogues and isoproterenol

机译:鸟苷5-三磷酸类似物和异丙肾上腺素对青蛙心室心肌细胞Ca2 +电流的调节

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摘要

Calcium currents (ICa) were measured in frog ventricular myocytes using the whole-cell patch clamp technique and a perfused pipette. To gain insight into the role of G proteins in the regulation of ICa in intact cells, the effect of internal perfusion with hydrolysis-resistant GTP analogues, guanylyl 5'-imidodiphosphate (GppNHp) or guanosine 5'- thiotriphosphate (GTP gamma S), on ICa stimulated by isoproterenol (Iso) or forskolin (Forsk) was examined. Significant differences were observed between the effects of the two GTP analogues. Internal perfusion of GppNHp resulted in a near-complete (approximately 80%) and irreversible inhibition of Iso-stimulated ICa. In contrast, internal perfusion with GTP gamma S resulted in only a partial (approximately 40%) inhibition of Iso- or Forsk-stimulated ICa. The fraction of the current not inhibited by GTP gamma S remained persistently elevated after the washout of Iso but declined to basal levels upon washout of Forsk. Excess internal GTP or GppNHp did not reduce the persistent ICa. Internal adenosine 5'-thiotriphosphate (ATP gamma S) mimicked the GTP gamma S-induced, persistent ICa. GppNHp sometimes induced a persistent ICa, but only if GppNHp was present at high concentration before Iso exposure. Inhibitors of protein kinase A inhibited both the GTP gamma S- and ATP gamma S-induced, persistent ICa. We conclude that: (a) GTP gamma S is less effective than GppNHp in inhibiting adenylyl cyclase (AC) via the inhibitory G protein, Gi; and (b) the persistent ICa results from a long-lived Gs-GTP gamma S complex that can activate AC in the absence of Iso. These results suggest that different hydrolysis- resistant nucleotide analogues may behave differently in activating G proteins and imply that the efficacy of G protein-effector molecule interactions can depend on the GTP analogue with which the G protein is activated.
机译:使用全细胞膜片钳技术和灌注移液管测量青蛙心室肌细胞中的钙电流(ICa)。为了深入了解G蛋白在完整细胞中ICa调控中的作用,研究了耐水解的GTP类似物,鸟苷5'-亚氨基二磷酸(GppNHp)或鸟苷5'-硫代三磷酸(GTPγS)对内部灌注的影响,考察了异丙肾上腺素(Iso)或毛喉素(Forsk)刺激的ICa的作用。在两种GTP类似物的作用之间观察到显着差异。 GppNHp的内部灌注导致接近完全(约80%)和对Iso刺激的ICa的不可逆抑制。相反,使用GTPγS进行内部灌注只会导致对Iso或Forsk刺激的ICa的部分抑制(约40%)。在Iso洗脱后,未被GTPγS抑制的电流部分仍持续升高,但在Forsk洗脱后降至基础水平。过多的内部GTP或GppNHp不会减少持久性ICa。内部腺苷5'-硫代三磷酸(ATPγS)模仿了GTPγS诱导的持续性ICa。 GppNHp有时会诱导持久性ICa,但前提是在Iso暴露之前GppNHp以高浓度存在。蛋白激酶A抑制剂抑制GTPγS和ATPγS诱导的持续性ICa。我们得出以下结论:(a)GTPγS通过抑制性G蛋白Gi在抑制腺苷酸环化酶(AC)方面不如GppNHp有效; (b)持久的ICa是由长寿命的Gs-GTPγS复合物产生的,该复合物在没有Iso的情况下可以激活AC。这些结果表明,不同的抗水解核苷酸类似物在激活G蛋白方面可能表现不同,这意味着G蛋白效应分子相互作用的功效可能取决于激活G蛋白的GTP类似物。

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