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C6细胞膜中β-肾上腺素能受体与嘌呤能受体相互作用的预稳态研究:与腺苷酸环化酶正性和负性偶联之间的即时平衡

Pre-steady state study of beta-adrenergic and purinergic receptor interaction in C6 cell membranes: undelayed balance between positive and negative coupling to adenylyl cyclase.

作者信息

Valeins H, Merle M, Labouesse J

机构信息

Institut de Biochimie Cellulaire et de Neurochimie, Centre National de la Recherche Scientifique, Bordeaux, France.

出版信息

Mol Pharmacol. 1992 Dec;42(6):1033-41.

PMID:1336111
Abstract

Interactions between beta-adrenergic and ADP purinergic receptors in C6 glioma cell membrane preparations were investigated under steady state and then pre-steady state conditions of adenylyl cyclase (EC 4.6.1.1) activity, in order to determine how fast the second receptor antagonizes the transduction mechanism of the first. Cell membranes were washed to deplete them as thoroughly as possible of low molecular weight compounds, especially ATP and ADP, and to ensure better control of both substrate and agonist nucleotide concentrations. ATP concentrations were kept constant with the use of an ATP-regenerating system; the C6 cell line exhibited very active ectonucleotidases. The purinergic agonist ADP was replaced by its nonhydrolyzable congener adenosine 5'-O-(2-thio)diphosphate (ADP beta S), which was demonstrated, like ADP, to inhibit isoproterenol-stimulated adenylyl cyclase activity in intact cells (IC50 for ADP, 0.5 +/- 0.1 microM; IC50 for ADP beta S, 25 +/- 2 microM) and in membrane preparations (IC50 for ADP beta S, 79 +/- 20 microM). In the case of membrane preparations, ADP beta S did not compete with ATP, the substrate of the cyclase-catalyzed reaction, and behaved apparently as a non-competitive inhibitor of the enzyme. The pre-steady state kinetics of isoproterenol-stimulated adenylyl cyclase activity measured with a pulsed quenched-flow apparatus have previously been shown to include two steps, the first very rapid (taking place within 1-2 sec) and giving rise to a burst of cAMP synthesis and the second much slower and corresponding to the steady state reaction. ADP beta S inhibited the occurrence of both steps with comparable IC50 values (mean value, 55 +/- 20 microM). In the presence of increasing concentrations of the purinergic receptor agonist, the time constant of the exponential burst reaction was not affected, but its amplitude progressively decreased to zero. These results showed that the extinction of the beta receptor cAMP response by the purinergic ADP receptor occurred within the dead-time of the pulsed quenched-flow apparatus, which was 50 msec. Such a rapid inhibition of cAMP production excluded modulation of isoproterenol-stimulated adenylyl cyclase activity by the ADP receptor by a pathway other than its direct negative coupling to the cyclase via a Gi protein. In this respect, the P2 purinergic ADP receptor of the C6 glioma cell line appears comparable to the P2t receptor of platelets.

摘要

为了确定第二种受体拮抗第一种受体转导机制的速度,我们在腺苷酸环化酶(EC 4.6.1.1)活性的稳态及随后的预稳态条件下,研究了C6胶质瘤细胞膜制剂中β-肾上腺素能受体与ADP嘌呤能受体之间的相互作用。细胞膜经过洗涤,尽可能彻底地去除低分子量化合物,尤其是ATP和ADP,以确保更好地控制底物和激动剂核苷酸的浓度。使用ATP再生系统使ATP浓度保持恒定;C6细胞系表现出非常活跃的外核苷酸酶。嘌呤能激动剂ADP被其不可水解的类似物腺苷5'-O-(2-硫代)二磷酸(ADPβS)取代,已证明ADPβS与ADP一样,可抑制完整细胞中异丙肾上腺素刺激的腺苷酸环化酶活性(ADP的IC50为0.5±0.1 microM;ADPβS的IC50为25±2 microM)以及膜制剂中的活性(ADPβS的IC50为79±20 microM)。对于膜制剂,ADPβS不与ATP(环化酶催化反应的底物)竞争,并且表现为该酶的非竞争性抑制剂。先前已证明,用脉冲猝灭流动装置测量的异丙肾上腺素刺激的腺苷酸环化酶活性的预稳态动力学包括两个步骤,第一步非常迅速(在1 - 2秒内发生),导致cAMP合成爆发,第二步则慢得多,对应于稳态反应。ADPβS以相当的IC50值(平均值为55±20 microM)抑制这两个步骤的发生。在嘌呤能受体激动剂浓度增加的情况下,指数爆发反应的时间常数不受影响,但其幅度逐渐降至零。这些结果表明,嘌呤能ADP受体对β受体cAMP反应的消除发生在脉冲猝灭流动装置的死时间内,即50毫秒。如此快速地抑制cAMP产生排除了ADP受体通过除经由Gi蛋白直接与环化酶负偶联之外的途径对异丙肾上腺素刺激的腺苷酸环化酶活性进行调节的可能性。在这方面,C6胶质瘤细胞系的P2嘌呤能ADP受体似乎与血小板的P2t受体相当。

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