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通过对NG108-15细胞膜进行低pH预处理来改变G蛋白偶联功能:通过降低G蛋白失活提高阿片类激动剂的效力

Modification of G protein-coupled functions by low-pH pretreatment of membranes from NG108-15 cells: increase in opioid agonist efficacy by decreased inactivation of G proteins.

作者信息

Selley D E, Breivogel C S, Childers S R

机构信息

Department of Physiology and Pharmacology, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, North Carolina 27157.

出版信息

Mol Pharmacol. 1993 Oct;44(4):731-41.

PMID:8232223
Abstract

Low-pH pretreatment increases opioid agonist efficacy in inhibiting adenylyl cyclase in brain membranes. The mechanism of this effect was examined in membranes from cultured NG108-15 cells. Pretreatment of NG108-15 membranes at pH 4.5 before assay at pH 7.4 produced the following modifications in G protein-mediated signal transduction: 1) decreased activation of adenylyl cyclase by Gs, 2) increased maximal inhibition of opioid agonist binding by sodium and by guanine nucleotides in the presence of sodium, and 3) increased maximal inhibition of adenylyl cyclase by agonists for G(i)-coupled receptors. These results are similar to those previously observed in rat brain membranes. The mechanism by which low-pH pretreatment increased receptor-mediated inhibition of adenylyl cyclase was investigated further by examining low-Km GTPase activity in low-pH-pretreated NG108-15 cell membranes. Low-pH pretreatment decreased basal and agonist-stimulated low-Km GTPase activity maximally in the absence of sodium and minimally in the presence of 120 mM NaCl. This change was due to a decrease in the Vmax of the enzyme, with no change in the Km for GTP, indicating that GTP hydrolysis was decreased without any decrease in the affinity of the G protein for GTP. Scatchard analysis revealed no decrease in the Bmax for high affinity opioid agonist binding, and Western blot analysis with a G(i)-specific antibody revealed no loss of G(i) protein, in low-pH-pretreated membranes. Moreover, concentration-effect curves for GTP in supporting opioid inhibition of adenylyl cyclase showed that low-pH pretreatment increased inhibition by the agonist only at GTP concentrations equal to or greater than the Km for GTP hydrolysis by the low-Km GTPase. Taken together, these results indicate that the efficacy of receptor-mediated inhibition of adenylyl cyclase can be increased by decreasing the maximal inactivation rate of G(i) subsequent to its activation by the receptor.

摘要

低pH预处理可增强阿片类激动剂抑制脑膜中腺苷酸环化酶的效力。在培养的NG108 - 15细胞的膜中研究了这种效应的机制。在pH 7.4下进行测定之前,将NG108 - 15膜在pH 4.5下进行预处理,在G蛋白介导的信号转导中产生了以下变化:1)Gs对腺苷酸环化酶的激活作用降低;2)在存在钠的情况下,钠和鸟嘌呤核苷酸对阿片类激动剂结合的最大抑制作用增强;3)G(i)偶联受体的激动剂对腺苷酸环化酶的最大抑制作用增强。这些结果与先前在大鼠脑膜中观察到的结果相似。通过检测低pH预处理的NG108 - 15细胞膜中的低Km GTP酶活性,进一步研究了低pH预处理增加受体介导的腺苷酸环化酶抑制作用的机制。低pH预处理在无钠的情况下最大程度地降低了基础和激动剂刺激的低Km GTP酶活性,而在存在120 mM NaCl的情况下最小程度地降低了该活性。这种变化是由于酶的Vmax降低,而GTP的Km没有变化,表明GTP水解减少,而G蛋白对GTP的亲和力没有任何降低。Scatchard分析显示,在低pH预处理的膜中,高亲和力阿片类激动剂结合的Bmax没有降低,用G(i)特异性抗体进行的蛋白质印迹分析显示G(i)蛋白没有损失。此外,支持阿片类对腺苷酸环化酶抑制作用的GTP的浓度-效应曲线表明,低pH预处理仅在GTP浓度等于或大于低Km GTP酶水解GTP的Km时才增加激动剂的抑制作用。综上所述,这些结果表明,通过降低受体激活后G(i)的最大失活速率,可以提高受体介导的腺苷酸环化酶抑制作用的效力。

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