Jakobs K H, Saur W, Johnson R A
Biochim Biophys Acta. 1979 Apr 3;583(4):409-21. doi: 10.1016/0304-4165(79)90058-8.
The stimulatory and inhibitory effects of adenosine on the adenylate cyclases of human and pig platelets were studied. Stimulation occurred at lower concentrations than did inhibition, and the stimulatory effect was prevented by methylxanthines. Stimulation by adenosine was immediate in onset and was reversible, under conditions when cyclic AMP formation was linear with respect to time and protein concentration. The stimulatory and inhibitory effects could be distinguished further by the use of various analogues of adenosine and could be prevented by adenosine deaminase. The data suggest that both stimulation and inhibition were due to adenosine itself and not one of its degradation products and that in the platelet preparation, neither formation nor degradation of adenosine during the adenylate cyclase incubation appreciably influenced measured activity. Stimulation by adenosine was additive with the effects of GMP-P(NH)P, and alpha- or beta-adrenergic stimulation, but was abolished by prostaglandin E1 or by NaF. Prostaglandin E1 and NaF increased the sensitivity of adenylate cyclase to inhibition by adenosine. The data suggest that guanyl-5'-yl-(beta-gamma-imino)diphosphate and/or adrenergic stimulation and adenosine exert their effects on adenylate cyclase by distinct mechanisms, but that prostaglandin E1 or F- and adenosine increase enzyme activity by mechanisms which may involve common intermediates in the coupling to adenylate cyclase.
研究了腺苷对人和猪血小板腺苷酸环化酶的刺激和抑制作用。刺激作用发生时的浓度低于抑制作用时的浓度,且甲基黄嘌呤可阻止刺激作用。在环磷酸腺苷(cAMP)形成与时间和蛋白质浓度呈线性关系的条件下,腺苷的刺激作用起效迅速且可逆。通过使用各种腺苷类似物可进一步区分刺激和抑制作用,腺苷脱氨酶可阻止这些作用。数据表明,刺激和抑制作用均归因于腺苷本身而非其降解产物之一,并且在血小板制剂中,腺苷酸环化酶孵育期间腺苷的形成或降解均未明显影响所测活性。腺苷的刺激作用与鸟苷-5'-基-(β,γ-亚氨基)二磷酸(GMP-P(NH)P)以及α-或β-肾上腺素能刺激的作用具有加和性,但前列腺素E1或氟化钠可消除该作用。前列腺素E1和氟化钠增加了腺苷酸环化酶对腺苷抑制作用的敏感性。数据表明,鸟苷-5'-基-(β,γ-亚氨基)二磷酸和/或肾上腺素能刺激以及腺苷通过不同机制对腺苷酸环化酶发挥作用,但前列腺素E1或F以及腺苷通过可能涉及与腺苷酸环化酶偶联的共同中间体的机制增加酶活性。