Feinberg A P, Snyder S H
Proc Natl Acad Sci U S A. 1975 May;72(5):1899-903. doi: 10.1073/pnas.72.5.1899.
The antischizophrenic activity of phenothiazine drugs and their tendency to elicit extrapyramidal symptoms are thought to involve blockade of synaptic dopamine receptors in the brain. Space filling molecular models show how favorable Van der Waal's interactions between the side chain amino of phenothiazines and the 2-substituent on ring A can promote a conformation mimicking dopamine. These Van der Waal's attractive forces can expain (i) the greater potency of drugs with trifluoromethyl rather than chlorine as a 2-substituent; (ii) the enhanced activity of phenothiazines with piperazine instead of alkylamino side chains; (iii) the increased potency associated with hydroxyethylpiperazines as contrasted to piperazine side chains; (iv) the greater potency of cis rather than trans thioxanthenes; and (v) the crucial location of the ring A substituent at carbon no. 2. Potential energy calculations support the observations with molecular models and suggest an active conformation for the phenothiazines.
吩噻嗪类药物的抗精神分裂症活性及其引发锥体外系症状的倾向被认为与阻断大脑中的突触多巴胺受体有关。空间填充分子模型展示了吩噻嗪类药物侧链氨基与A环上2-取代基之间有利的范德华相互作用如何促进模拟多巴胺的构象。这些范德华吸引力可以解释:(i)以三氟甲基而非氯作为2-取代基的药物具有更高的效力;(ii)具有哌嗪而非烷基氨基侧链的吩噻嗪类药物活性增强;(iii)与哌嗪侧链相比,羟乙基哌嗪相关的效力增加;(iv)顺式硫杂蒽比反式硫杂蒽具有更高的效力;以及(v)A环取代基在2号碳上的关键位置。势能计算支持了分子模型的观察结果,并提出了吩噻嗪类药物的活性构象。