Braun S, Levitzki A
Biochemistry. 1979 May 15;18(10):2134-8. doi: 10.1021/bi00577a045.
The mode of coupling of the adenosine receptor to adenylate cyclase in turkey erythrocyte membranes was probed by two independent approaches. The progressive inactivation of the adenosine receptor by an adenosine receptor affinity label resulted in the proportional reduction in the adenosine plus GppNHp dependent specific activity. In contrast, the intrinsic rate constant (k3), characterizing the process of adenylate cyclase activation by the adenosine-adenosine receptor complex, is independent of the extent of receptor inactivation. This behavior favors the precoupled mechanism, A + R.E: formula: (see text), where the receptor R and the enzyme E are permanently coupled to each other and the adenosine A binds to the receptor and induces the first-order process of cyclase activation to its active form ARE'. The finding that adenosine receptor is permanently coupled to the cyclase catalytic unit is corroborated by the observation that the progressive increase in membrane fluidity has no effect on the rate constant (k3) of adenylate cyclase activation by the adenosine-adenosine receptor complex and that the dose-response curve for adenosine is noncooperative.
通过两种独立的方法探究了火鸡红细胞膜中腺苷受体与腺苷酸环化酶的偶联模式。腺苷受体亲和标记使腺苷受体逐渐失活,导致腺苷加GppNHp依赖的比活性成比例降低。相反,表征腺苷 - 腺苷受体复合物激活腺苷酸环化酶过程的内在速率常数(k3)与受体失活程度无关。这种行为支持预偶联机制,即A + R.E:公式:(见正文),其中受体R和酶E永久相互偶联,腺苷A与受体结合并诱导环化酶激活至其活性形式ARE'的一级过程。膜流动性的逐渐增加对腺苷 - 腺苷受体复合物激活腺苷酸环化酶的速率常数(k3)没有影响,以及腺苷的剂量 - 反应曲线是非协同的这一观察结果,证实了腺苷受体与环化酶催化单元永久偶联的发现。