Asano T, Ross E M
Biochemistry. 1984 Nov 6;23(23):5467-71. doi: 10.1021/bi00318a014.
The stimulatory GTP-binding protein of adenylate cyclase, Gs, and beta-adrenergic receptors were reconstituted into unilamellar phospholipid vesicles. The kinetics of the quasiirreversible binding of guanosine 5'-O-(3-thiotriphosphate) (GTP gamma S) to Gs, equivalent to Gs activation by nucleotide, was studied with respect to the stimulation of this process by beta-adrenergic agonists and Mg2+. The rate of GTP gamma S binding displayed apparent first-order kinetics over a wide range of nucleotide, agonist, and Mg2+ concentrations. In the absence of agonist, the apparent first-order rate constant, kapp, was 0.17-0.34 min-1 and did not vary significantly with the concentration of nucleotide. At 50 mM MgCl2, kapp increased somewhat, to 0.26-0.41 min-1, and remained invariant with the nucleotide concentration. In the presence of agonist, kapp was dependent on nucleotide concentration. At 10(-9) M GTP gamma S, the addition of (-)-isoproterenol caused at most a 2-fold stimulation of kapp. However, kapp measured in the presence of isoproterenol increased as an apparently saturable function of the GTP gamma S concentration, such that isoproterenol caused a 17-fold increase in kapp at 1 microM GTP gamma S. The effect of isoproterenol on kapp also appeared to saturate at high isoproterenol concentration, yielding a kapp approximately 6 min-1 at high concentrations of both nucleotide and agonist. These data suggest that the receptor-agonist complex acts by increasing the rate of conversion of a lower affinity Gs-GTP gamma S complex to the stable activated state.
腺苷酸环化酶的刺激性GTP结合蛋白Gs和β-肾上腺素能受体被重组到单层磷脂囊泡中。研究了鸟苷5'-O-(3-硫代三磷酸)(GTPγS)与Gs的准不可逆结合动力学,等同于核苷酸对Gs的激活,考察了β-肾上腺素能激动剂和Mg2+对该过程的刺激作用。在广泛的核苷酸、激动剂和Mg2+浓度范围内,GTPγS结合速率呈现明显的一级动力学。在没有激动剂的情况下,表观一级速率常数kapp为0.17 - 0.34 min-1,且不随核苷酸浓度显著变化。在50 mM MgCl2时,kapp略有增加,至0.26 - 0.41 min-1,并随核苷酸浓度保持不变。在激动剂存在的情况下,kapp依赖于核苷酸浓度。在10(-9) M GTPγS时,加入(-)-异丙肾上腺素最多使kapp增加2倍。然而,在异丙肾上腺素存在下测得的kapp随着GTPγS浓度的明显饱和函数而增加,使得在1 μM GTPγS时异丙肾上腺素使kapp增加17倍。异丙肾上腺素对kapp的影响在高异丙肾上腺素浓度下似乎也达到饱和,在高浓度的核苷酸和激动剂时产生的kapp约为6 min-1。这些数据表明,受体-激动剂复合物通过增加低亲和力的Gs-GTPγS复合物向稳定激活状态的转化速率而起作用。