Hanoune J, Lacombe M L, Pecker F
J Biol Chem. 1975 Jun 25;250(12):4569-74.
The epinephrine sensitivity in vitro of the adenylate cyclase system in liver plasma membranes from adrenalectomized rats was increased by the addition of 1 to 100 muM GTP or GDP in the incubation medium. Basal and glucagon-stimulated cyclase activities were also enhanced by GTP and GDP. These effects occurred even in the absence of an ATP-regenerating system. They were mimicked by 5'-guanyl diphosphonate and a series of guanyl derivatives, indicating that the structural requirement for the GTP action is not very stringent. Guanyl nucleotides did not increase the affinity of the adenylate cyclase system for the activating hormones, nor did they protect the enzyme activity against denaturation. Their synergic effect was due to an enhancement of the affinity of the enzyme for the substrate MgATP and also to an increase of the maximal velocity of the reaction. It is proposed that the guanyl nucleotides act directly and primarily upon the catalytic component of the cyclase system, independently of their effects on the binding of the activating hormones to liver plasma membrane. Since the activating effects of epinephrine and glucagon are similar in the presence of GTP, but not in its absence, it is suggested that the lower efficiency of epinephrine under normal conditions is not due to intrinsic membrane characteristics, but rather, to superimposed extraneous modulations.
在肾上腺切除大鼠肝细胞膜的腺苷酸环化酶系统体外实验中,向孵育培养基中添加1至100μM的鸟苷三磷酸(GTP)或鸟苷二磷酸(GDP)可增强肾上腺素敏感性。GTP和GDP还可增强基础和胰高血糖素刺激的环化酶活性。即使在没有ATP再生系统的情况下,这些效应也会出现。5'-鸟苷二磷酸酯和一系列鸟苷衍生物可模拟这些效应,表明GTP作用的结构要求不是非常严格。鸟苷酸不会增加腺苷酸环化酶系统对激活激素的亲和力,也不会保护酶活性免于变性。它们的协同作用是由于酶对底物MgATP的亲和力增强以及反应最大速度的增加。有人提出,鸟苷酸直接且主要作用于环化酶系统的催化成分,与其对激活激素与肝细胞膜结合的影响无关。由于在存在GTP的情况下肾上腺素和胰高血糖素的激活作用相似,但在不存在GTP的情况下则不然,因此有人认为正常条件下肾上腺素效率较低不是由于内在膜特性,而是由于叠加的外部调节。