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鸟苷三磷酸(GTP)和钠离子调节受体 - 腺苷酸环化酶偶联以及受体介导的功能。

GTP and Na+ modulate receptor-adenyl cyclase coupling and receptor-mediated function.

作者信息

Limbird L E

出版信息

Am J Physiol. 1984 Jul;247(1 Pt 1):E59-68. doi: 10.1152/ajpendo.1984.247.1.E59.

DOI:10.1152/ajpendo.1984.247.1.E59
PMID:6146263
Abstract

Activation and inhibition of adenylate cyclase activity is mediated via two distinct GTP-binding proteins. In both stimulatory and inhibitory systems, receptor occupancy by a hormone or agonist drug stabilizes receptor interactions with its functionally associated GTP-binding protein and, as a consequence, facilitates GTP occupancy of the regulatory protein. Activation of cyclase proceeds until GTP is hydrolyzed to GDP. Although hormonal inhibition of cyclase is elicited by a sequence of molecular events seemingly parallel to those for activation of cyclase, it is not known whether hormonal inhibition of cyclase involves the direct interaction of the GTP-occupied inhibitory regulatory protein with the catalytic subunit or results indirectly from destabilization of the interaction of the stimulatory GTP-binding protein with the catalytic moiety. Sodium ion also modulates receptor-mediated inhibition of adenylate cyclase, although apparently via a component distinct from the GTP-binding subunit of the inhibitory GTP-binding protein. Sodium also influences the physiological functions elicited by receptors that mediate inhibition of cyclase, at least for alpha 2-adrenergic-promoted platelet secretion. The relationship between sodium effects on hormonal attenuation of cAMP accumulation and elicited physiological effects is discussed.

摘要

腺苷酸环化酶活性的激活和抑制是通过两种不同的GTP结合蛋白介导的。在刺激和抑制系统中,激素或激动剂药物与受体结合会稳定受体与其功能相关的GTP结合蛋白之间的相互作用,结果促进调节蛋白与GTP的结合。环化酶的激活会持续进行,直到GTP水解为GDP。虽然环化酶的激素抑制是由一系列看似与环化酶激活过程平行的分子事件引发的,但尚不清楚环化酶的激素抑制是否涉及GTP占据的抑制性调节蛋白与催化亚基的直接相互作用,还是间接由刺激性GTP结合蛋白与催化部分相互作用的不稳定导致的。钠离子也调节受体介导的腺苷酸环化酶抑制,尽管显然是通过与抑制性GTP结合蛋白的GTP结合亚基不同的成分。钠离子还影响介导环化酶抑制的受体所引发的生理功能,至少对于α2-肾上腺素能促进的血小板分泌是如此。本文讨论了钠离子对cAMP积累的激素衰减作用与引发的生理效应之间的关系。

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