Suidan H, Tamir A, Tolkovsky A M
J Biol Chem. 1983 Sep 10;258(17):10524-9.
The mechanism of receptor-induced activation of adenylate cyclase has been proposed to involve an enhanced exchange of GDP for GTP. The kinetics of this process have not been investigated so far in the brain due to a spontaneous activation of the enzyme by guanyl nucleotides, which precludes the ability to follow receptor-dependent events. We show that it is possible to investigate the mechanism of receptor action in such systems by using a combination of guanosine 5'-(beta-gamma-imino)triphosphate (Gpp(NH)p) and guanosine 5'-(2-O-thio)diphosphate (GDP beta S). In pineal membranes, beta-adrenergic agonists increase the rate of adenylate cyclase activation by 10 or 100 microM Gpp(NH)p about 40-fold (0.023-0.9 min-1 kact) and decrease the inhibitory potency of GDP beta S nearly 1000-fold. As a result, 100 microM GDP beta S which blocks 90% of the activation by 10 microM Gpp(NH)p has no inhibitory effect in the presence of 10 microM Gpp(NH)p and 10 microM noradrenaline or isoproterenol. In caudate nucleus, dopamine does not appear to increase the rate of activation of adenylate cyclase by 10 microM Gpp(NH)p. Nevertheless, 100 microM GDP beta S blocks 90% of the activation by 10 microM Gpp(NH)p but has no inhibitory effects in the presence of dopamine. Thus, one can demonstrate that even weakly activating receptors have the capacity to facilitate a functional exchange of GDP beta S for Gpp(NH)p and measure the efficacy of the interaction between the receptor and the functionally linked guanyl nucleotide subunit.
受体诱导的腺苷酸环化酶激活机制被认为涉及GDP与GTP的交换增强。由于鸟苷酸会自发激活该酶,目前尚未在大脑中研究此过程的动力学,这使得追踪受体依赖性事件的能力受到限制。我们表明,通过使用5'-(β-γ-亚氨基)三磷酸鸟苷(Gpp(NH)p)和5'-(2-O-硫代)二磷酸鸟苷(GDPβS)的组合,可以研究此类系统中受体作用的机制。在松果体膜中,β-肾上腺素能激动剂使10或100μM Gpp(NH)p激活腺苷酸环化酶的速率提高约40倍(0.023 - 0.9 min⁻¹ kact),并使GDPβS的抑制效力降低近1000倍。结果,100μM GDPβS可阻断10μM Gpp(NH)p 90%的激活作用,但在存在10μM Gpp(NH)p和10μM去甲肾上腺素或异丙肾上腺素时无抑制作用。在尾状核中,多巴胺似乎不会提高10μM Gpp(NH)p激活腺苷酸环化酶的速率。然而,100μM GDPβS可阻断10μM Gpp(NH)p 90%的激活作用,但在存在多巴胺时无抑制作用。因此,可以证明即使是弱激活受体也有能力促进GDPβS与Gpp(NH)p的功能性交换,并测量受体与功能连接的鸟苷酸亚基之间相互作用的效力。