Birdsall N J, Hulme E C, Keen M
Br J Pharmacol. 1986 Feb;87(2):307-16. doi: 10.1111/j.1476-5381.1986.tb10819.x.
The binding of pirenzepine to digitonin-solubilized rat myocardial muscarinic acetylcholine receptors has been examined at 4 degrees C. Solubilization produced only small changes in the binding of N-methylscopolamine and atropine. In contrast to the low affinity binding of pirenzepine found to be present in in the membranes, high affinity binding was detected in the soluble preparation. In both preparations, pirenzepine binding was complex. High affinity pirenzepine binding (KD approximately 3 X 10(-8)M) to the soluble myocardial receptors could be monitored directly using [3H]-pirenzepine. [3H]-pirenzepine-labelled soluble myocardial receptors have a sedimentation coefficient of 11.1 s. This indicates that [3H]-pirenzepine binds predominantly to the uncoupled form of the receptor. However, [3H]-pirenzepine-agonist competition experiments indicated that the high affinity pirenzepine binding sites are capable of coupling with a guanosine 5'-triphosphate (GTP)-binding protein. Pirenzepine affinities for the soluble myocardial receptors were unaffected by their state of association with the GTP-binding proteins found in the heart. The equilibrium binding properties of the soluble cortical and myocardial receptors were very similar. However, the binding kinetics of the myocardial receptor were much slower. It appears that the membrane environment can affect the affinity of pirenzepine for the rat myocardial muscarinic receptor. Removal of the constraint by solubilization allows the expression of high affinity pirenzepine binding.
已在4℃下检测了哌仑西平与洋地黄皂苷增溶的大鼠心肌毒蕈碱型乙酰胆碱受体的结合。增溶作用仅使N-甲基东莨菪碱和阿托品的结合产生微小变化。与在膜中发现的哌仑西平低亲和力结合相反,在可溶性制剂中检测到高亲和力结合。在两种制剂中,哌仑西平的结合都很复杂。使用[3H] - 哌仑西平可直接监测高亲和力的哌仑西平与可溶性心肌受体的结合(KD约为3×10^(-8)M)。[3H] - 哌仑西平标记的可溶性心肌受体的沉降系数为11.1 s。这表明[3H] - 哌仑西平主要与未偶联形式的受体结合。然而,[3H] - 哌仑西平 - 激动剂竞争实验表明,高亲和力的哌仑西平结合位点能够与鸟苷5'-三磷酸(GTP)结合蛋白偶联。哌仑西平对可溶性心肌受体的亲和力不受其与心脏中发现的GTP结合蛋白结合状态的影响。可溶性皮质和心肌受体的平衡结合特性非常相似。然而,心肌受体的结合动力学要慢得多。似乎膜环境可以影响哌仑西平对大鼠心肌毒蕈碱受体的亲和力。通过增溶去除这种限制可使高亲和力的哌仑西平结合得以表达。