Department of Cellular and Molecular Biology, Centre de Recherche Pierre Fabre, 17, avenue Jean Moulin, F-81106 Castres Cedex, France.
Eur J Pharmacol. 2011 Nov 1;669(1-3):51-8. doi: 10.1016/j.ejphar.2011.07.031. Epub 2011 Aug 5.
N-desmethylclozapine (NDMC or norclozapine) is the major active metabolite of the antipsychotic clozapine in humans. The activity of NDMC differs from clozapine at a number of neurotransmitter receptors, probably influencing the pharmacological effects of clozapine treatment. Here, we tested the properties of NDMC in comparison with clozapine at recombinant human dopamine D(2) and serotonin 5-HT(1A) receptors, using a panel of functional assays implicating diverse signalling pathways. At dopamine D(2) receptors, NDMC as well as clozapine did not display agonist activity in measures of G protein activation by [(35)S]GTPγS binding and in the sensitive Extracellular Signal-Regulated Kinase 1/2 (ERK1/2) phosphorylation assay. In contrast, there were weak partial agonist actions of NDMC (but not of clozapine) for dopamine D(2)-dependent activation of Ca(2+) liberation via coexpressed chimeric Gα(q/o) proteins and for G protein-coupled inward rectifier potassium channel (GIRK) current induction in Xenopus oocytes. Intriguingly, GIRK currents induced by NDMC via dopamine D(2) receptors showed a rapid and transient time course, strikingly different from currents recorded with other receptor agonists. At serotonin 5-HT(1A) receptors, NDMC was a more efficacious partial agonist than clozapine for [(35)S]GTPγS binding, ERK1/2 phosphorylation and GIRK activation. Respective low and moderate partial agonist properties of NDMC at dopamine D(2) and serotonin 5-HT(1A) receptors thus differentiate the metabolite from its parent drug and may contribute to the overall effects of clozapine pharmacotherapy.
N-去甲氯氮平(NDMC 或去甲氯氮平)是人类抗精神病药氯氮平的主要活性代谢物。NDMC 在许多神经递质受体上的活性与氯氮平不同,可能影响氯氮平治疗的药理作用。在这里,我们使用涉及多种信号通路的功能测定法,比较了 NDMC 与氯氮平在重组人多巴胺 D2 和 5-羟色胺 5-HT1A 受体上的特性。在多巴胺 D2 受体上,NDMC 以及氯氮平在通过 [(35)S]GTPγS 结合测量 G 蛋白激活和灵敏的细胞外信号调节激酶 1/2(ERK1/2)磷酸化测定中均不显示激动剂活性。相比之下,NDMC(而非氯氮平)对多巴胺 D2 依赖性通过共表达的嵌合 Gα(q/o)蛋白诱导的 Ca2+释放和 Xenopus 卵母细胞中的 G 蛋白偶联内向整流钾通道(GIRK)电流诱导具有弱的部分激动剂作用。有趣的是,NDMC 通过多巴胺 D2 受体诱导的 GIRK 电流表现出快速而短暂的时程,与其他受体激动剂记录的电流明显不同。在 5-羟色胺 5-HT1A 受体上,NDMC 是比氯氮平更有效的部分激动剂,用于 [(35)S]GTPγS 结合、ERK1/2 磷酸化和 GIRK 激活。因此,NDMC 在多巴胺 D2 和 5-羟色胺 5-HT1A 受体上的低和中度部分激动剂特性将代谢物与母体药物区分开来,并可能有助于氯氮平药物治疗的整体效果。