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On the mechanism of basal and agonist-induced activation of the G protein-gated muscarinic K+ channel in atrial myocytes of guinea pig heart

机译:基础和激动剂诱导的豚鼠心房肌细胞G蛋白门控毒蕈碱K +通道活化的机制

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摘要

Using the patch clamp technique, we examined the agonist-free, basal interaction between the muscarinic acetylcholine (m-ACh) receptor and the G protein (GK)-gated muscarinic K+ channel (IK.ACh), and the modification of this interaction by ACh binding to the receptor in single atrial myocytes of guinea pig heart. In the whole cell clamp mode, guanosine-5'-O-(3-thiotriphosphate) (GTP-gamma S) gradually increased the IK.ACh current in the absence of agonists (e.g., acetylcholine). This increase was inhibited in cells that were pretreated with islet-activating protein (IAP, pertussis toxin) or N- ethylmaleimide (NEM). In inside-out patches, even in the absence of agonists, intracellular GTP caused openings of IK.ACh in a concentration-dependent manner in approximately 80% of the patches. Channel activation by GTP in the absence of agonist was much less than that caused by GTP-gamma S. The agonist-independent, GTP-induced activation of IK.ACh was inhibited by the A promoter of IAP (with nicotinamide adenine dinucleotide) or NEM. As the ACh concentration was increased, the GTP-induced maximal open probability of IK.ACh was increased and the GTP concentration for the half-maximal activation of IK.ACh was decreased. Intracellular GDP inhibited the GTP-induced openings of IK.ACh in a concentration-dependent fashion. The half- inhibition of IK.ACh openings occurred at a much lower concentration of GDP in the absence of agonists than in the presence of ACh. From these results, we concluded (a) that the interaction between the m-ACh receptor and GK is essential for basal stimulation of IK.ACh, and (b) that ACh binding to the receptor accelerates the turnover of GK and increases GK's affinity to GTP analogues over GDP.
机译:使用膜片钳技术,我们检查了毒蕈碱乙酰胆碱(m-ACh)受体与G蛋白(GK)门控毒蕈碱K +通道(IK.ACh)之间无激动剂的基础相互作用,以及这种相互作用的修饰ACh与豚鼠心脏单个心房肌细胞中的受体结合。在全细胞钳模式下,鸟嘌呤5'-O-(3-硫代三磷酸)(GTP-γS)在没有激动剂(例如乙酰胆碱)的情况下逐渐增加IK.ACh电流。在用胰岛激活蛋白(IAP,百日咳毒素)或N-乙基马来酰亚胺(NEM)预处理的细胞中,这种增加受到抑制。在由内而外的贴剂中,即使在没有激动剂的情况下,细胞内GTP也会在大约80%的贴剂中以浓度依赖的方式引起IK.ACh的开放。在没有激动剂的情况下,GTP激活的通道比由GTP-γS引起的通道激活要少得多。IAP的A启动子(与烟酰胺腺嘌呤二核苷酸一起)或NEM抑制了与激动剂无关的GTP诱导的IK.ACh激活。 。随着ACh浓度的增加,GTP诱导的IK.ACh的最大开放概率增加,而IK.ACh的半数最大激活的GTP浓度降低。细胞内GDP以浓度依赖的方式抑制了GTP诱导的IK.ACh的开放。在没有激动剂的情况下,IK.ACh开孔的半抑制发生在GDP浓度比在存在ACh的情况下低得多。根据这些结果,我们得出以下结论:(a)m-ACh受体与GK之间的相互作用对于IK.ACh的基础刺激至关重要,并且(b)ACh与受体的结合会加速GK的更新并增加GK对GTP类似物超过GDP。

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  • 年度 1991
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