Anthony B L, Aronstam R S
J Neurochem. 1986 Feb;46(2):556-61. doi: 10.1111/j.1471-4159.1986.tb13003.x.
The effect of hydrogen ion concentration on ligand binding to muscarinic acetylcholine receptors was studied in membranes isolated from rat brainstem. The binding of [3H]methylscopolamine was constant between pH 7 and 10. The affinity, but not the number, of [3H]methylscopolamine binding sites decreased below pH 7; at pH 4 little binding was detected. When brainstem membranes were incubated at various pH levels from 3 to 11 for 1 h and then returned to pH 8, [3H]methylscopolamine binding affinity was restored to control levels. Carbamylcholine binding affinity was also depressed in media of low pH. However, this decrease was permanent after a 1-h incubation at pH 4 (i.e. carbamylcholine affinity was not restored on raising the pH to 8). The capacity of a guanine nucleotide to affect carbamylcholine was also abolished by a 1-h incubation at pH 4, and was not restored by raising the pH. The guanine nucleotide-dependent regulatory protein may be irreversibly inactivated or dissociated from the receptor at low pH. The receptor's binding subunit, on the other hand, appears to be much less sensitive to hydrogen ion concentration.
在从大鼠脑干分离出的膜中研究了氢离子浓度对毒蕈碱型乙酰胆碱受体配体结合的影响。在pH 7至10之间,[3H]甲基东莨菪碱的结合是恒定的。低于pH 7时,[3H]甲基东莨菪碱结合位点的亲和力降低,但数量未变;在pH 4时几乎检测不到结合。当脑干膜在3至11的不同pH水平下孵育1小时,然后恢复到pH 8时,[3H]甲基东莨菪碱结合亲和力恢复到对照水平。在低pH介质中,氨甲酰胆碱结合亲和力也降低。然而,在pH 4孵育1小时后,这种降低是永久性的(即,将pH提高到8时,氨甲酰胆碱亲和力未恢复)。在pH 4孵育1小时也消除了鸟嘌呤核苷酸影响氨甲酰胆碱的能力,并且通过提高pH不能恢复。鸟嘌呤核苷酸依赖性调节蛋白在低pH下可能不可逆地失活或与受体解离。另一方面,受体的结合亚基似乎对氢离子浓度不太敏感。