Williams M, Braunwalder A, Erickson T J
Naunyn Schmiedebergs Arch Pharmacol. 1986 Feb;332(2):179-83. doi: 10.1007/BF00511410.
The binding of [3H]-Cyclopentyladenosine (CPA), an N6-substituted analog of adenosine, was examined in vitro. CPA bound with high affinity (Kd = 0.48 nmol/l) to rat brain membranes. Specific binding, which represented 90-97% of the total counts bound at a ligand concentration of 1 nmol/l, was saturable, reversible and sensitive to protein denaturation. The pharmacology of binding was consistent with the labeling of an A-1 receptor, the R- and S-diasteromers of N6-phenylisopropyladenosine (PIA) showing a sixteenfold difference in their ability to displace CPA. The prototypic A-1 selective adenosine agonist, N6-cyclohexyladenosine (CHA) was twofold less active than CPA in displacing radiolabeled CPA. Comparison of the ability of cold CHA and CPA to displace [3H]-CPA gave rate dissociation constants of 1.88 and 1.80 X 10(4) s-1, respectively suggesting that both CHA and CPA bound to the same recognition site. In contrast however, comparison of the binding of [3H]-CPA with that of [3H]-CHA showed distinct differences. The Kd for CHA was approximately twice that of CPA while the apparent Bmax was 60% greater. In comparing the pharmacology of CPA binding with that of CHA, it was found that CHA, S-PIA and the antagonist, PACPX were more active in displacing CHA than CPA. In general however, CPA has a binding profile very similar to that observed with CHA.
对腺苷的 N6 - 取代类似物[3H] - 环戊基腺苷(CPA)的结合情况进行了体外研究。CPA 以高亲和力(Kd = 0.48 nmol/l)与大鼠脑膜结合。在配体浓度为 1 nmol/l 时,特异性结合占总结合计数的 90 - 97%,具有饱和性、可逆性且对蛋白质变性敏感。结合的药理学特性与 A - 1 受体的标记情况一致,N6 - 苯基异丙基腺苷(PIA)的 R - 和 S - 非对映异构体在取代 CPA 的能力上显示出 16 倍的差异。原型 A - 1 选择性腺苷激动剂 N6 - 环己基腺苷(CHA)在取代放射性标记的 CPA 方面的活性比 CPA 低两倍。比较冷的 CHA 和 CPA 取代[3H] - CPA 的能力,得到的速率解离常数分别为 1.88 和 1.80×10(4) s - 1,这表明 CHA 和 CPA 都结合到相同的识别位点。然而,相比之下,[3H] - CPA 与[3H] - CHA 的结合情况显示出明显差异。CHA 的 Kd 约为 CPA 的两倍,而表观 Bmax 则大 60%。在比较 CPA 结合与 CHA 结合的药理学特性时,发现 CHA、S - PIA 和拮抗剂 PACPX 在取代 CHA 方面比取代 CPA 更具活性。然而,总体而言,CPA 的结合谱与 CHA 观察到的非常相似。