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用新型放射性配体2-[2-(4-氨基-3-[¹²⁵I]碘苯基)乙氨基]腺苷对腺苷A2a受体的两种亲和状态进行表征。

Characterization of two affinity states of adenosine A2a receptors with a new radioligand, 2-[2-(4-amino-3-[125I]iodophenyl)ethylamino]adenosine.

作者信息

Luthin D R, Olsson R A, Thompson R D, Sawmiller D R, Linden J

机构信息

Department of Internal Medicine, University of Virginia Health Sciences Center, Charlottesville.

出版信息

Mol Pharmacol. 1995 Feb;47(2):307-13.

PMID:7870039
Abstract

Adenosine analogs substituted in the 2-position with arylamino groups have been found to have high affinity and selectivity for A2a adenosine receptors. Two such compounds, 2-[2-(4-aminophenyl)ethylamino]adenosine and 2-[2-4-amino-3-iodophenyl)ethylamino]adenosine (I-APE), were synthesized and found to be potent coronary vasodilators (ED50 < 3 nm). These compounds bind weakly to A1 adenosine receptors of rat cortex (Ki > 150 nM). 125I-APE was synthesized and the new radioligand was found to bind to two affinity states of rat striatal A2a adenosine receptors (Kd = 1.3 +/- 0.1 nM and 19 +/- 4.5 nM). The high affinity site represents a previously unrecognized small (15-20%) fraction of A2a adenosine receptors coupled to G proteins. Guanosine 5'-O-(3-thio)triphosphate (GTP gamma S) reduces specific binding of 125I-APE half-maximally at a concentration of 45 +/- 2 nM. [3H]CGS21680 also binds to two affinity states of A2a receptors on striatal membranes (Kd = 3.9 +/- 0.9 and 51 +/- 5.5 nM), although in previous studies single Kd values ranging from 5 to 15 nM have been reported. This high affinity site is substantiated by the finding that the IC50 of CGS21680 in competition with 125I-APE binding to striatal membranes is shifted leftward in membranes diluted for 4 min before filtration, to selectively dissociate radioligand from low affinity receptors. Assuming that agonist radioligands bind to both coupled and uncoupled forms of striatal A2a adenosine receptors, we could simulate with the computer the finding that the decrease in specific binding induced by GTP gamma S (100 microM) is variable and depends on radioligand concentration, ranging from 20 to 90%. Unlike 125I-APE, [3H]CGS21680 is charged at physiological pH, and treatment of membranes with the pore-forming antibiotic alamethicin uncovers cryptic [3H]CGS21680 but not 125I-APE binding sites. We conclude that the GTP gamma S-sensitive high affinity form of the A2a adenosine receptor can be preferentially labeled by 125I-APE, due to both its high specific activity and its physicochemical properties. Possible functional manifestations of poor coupling of A2a adenosine receptors to G proteins are discussed.

摘要

已发现2位被芳基氨基取代的腺苷类似物对A2a腺苷受体具有高亲和力和选择性。合成了两种这样的化合物,即2-[2-(4-氨基苯基)乙氨基]腺苷和2-[2-(4-氨基-3-碘苯基)乙氨基]腺苷(I-APE),发现它们是强效冠状动脉血管扩张剂(半数有效剂量<3 nM)。这些化合物与大鼠皮质的A1腺苷受体结合较弱(抑制常数>150 nM)。合成了125I-APE,发现这种新的放射性配体与大鼠纹状体A2a腺苷受体的两种亲和状态结合(解离常数=1.3±0.1 nM和19±4.5 nM)。高亲和力位点代表了以前未被认识的与G蛋白偶联的A2a腺苷受体的一小部分(15%-20%)。鸟苷5'-O-(3-硫代)三磷酸(GTPγS)在浓度为45±2 nM时使125I-APE的特异性结合降低一半。[3H]CGS21680也与纹状体膜上A2a受体的两种亲和状态结合(解离常数=3.9±0.9和51±5.5 nM),尽管在以前的研究中报道的单个解离常数范围为5至15 nM。这一高亲和力位点得到了以下发现的证实:在过滤前稀释4分钟的膜中,CGS21680与125I-APE竞争结合纹状体膜的半数抑制浓度向左移动,以选择性地使放射性配体从低亲和力受体上解离。假设激动剂放射性配体与纹状体A2a腺苷受体的偶联和未偶联形式都结合,我们可以用计算机模拟发现GTPγS(100 microM)诱导的特异性结合减少是可变的,并且取决于放射性配体浓度,范围为20%至90%。与125I-APE不同,[3H]CGS21680在生理pH下带电荷,用成孔抗生素短杆菌肽处理膜会暴露隐蔽的[3H]CGS21680结合位点,但不会暴露125I-APE结合位点。我们得出结论,由于其高比活性和物理化学性质,A2a腺苷受体对GTPγS敏感的高亲和力形式可以被125I-APE优先标记。讨论了A2a腺苷受体与G蛋白偶联不佳的可能功能表现。

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