首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >2-Substituted 3β-Aryltropane Cocaine Analogs Produce Atypical Effects without Inducing Inward-Facing Dopamine Transporter Conformations
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2-Substituted 3β-Aryltropane Cocaine Analogs Produce Atypical Effects without Inducing Inward-Facing Dopamine Transporter Conformations

机译:2取代的3β-Aryltropane可卡因类似物可产生非典型效应而不会引起向内的多巴胺转运蛋白构象

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摘要

Previous structure-activity relationship studies indicate that a series of cocaine analogs, 3β-aryltropanes with 2β-diarylmethoxy substituents, selectively bind to the dopamine transporter (DAT) with nanomolar affinities that are 10-fold greater than the affinities of their corresponding 2α-enantiomers. The present study compared these compounds to cocaine with respect to locomotor effects in mice, and assessed their ability to substitute for cocaine (10 mg/kg, i.p.) in rats trained to discriminate cocaine from saline. Despite nanomolar DAT affinity, only the 2β-Ph2COCH2-3β-4-Cl-Ph analog fully substituted for cocaine-like discriminative effects. Whereas all of the 2β compounds increased locomotion, only the 2β-(4-ClPh)PhCOCH2-3β-4-Cl-Ph analog had cocaine-like efficacy. None of the 2α-substituted compounds produced either of these cocaine-like effects. To explore the molecular mechanisms of these drugs, their effects on DAT conformation were probed using a cysteine-accessibility assay. Previous reports indicate that cocaine binds with substantially higher affinity to the DAT in its outward (extracellular)- compared with inward-facing conformation, whereas atypical DAT inhibitors, such as benztropine, have greater similarity in affinity to these conformations, and this is postulated to explain their divergent behavioral effects. All of the 2β- and 2α-substituted compounds tested altered cysteine accessibility of DAT in a manner similar to cocaine. Furthermore, molecular dynamics of in silico inhibitor-DAT complexes suggested that the 2-substituted compounds reach equilibrium in the binding pocket in a cocaine-like fashion. These behavioral, biochemical, and computational results show that aryltropane analogs can bind to the DAT and stabilize outward-facing DAT conformations like cocaine, yet produce effects that differ from those of cocaine.
机译:先前的结构活性关系研究表明,一系列可卡因类似物,具有2β-二芳基甲氧基取代基的3β-芳基环烷烃,选择性地与多巴胺转运蛋白(DAT)结合,其纳摩尔亲和力比其相应2α-对映体的亲和力大10倍。 。本研究将这些化合物与可卡因在小鼠中的运动效果进行了比较,并评估了它们在训练可从盐水中区分可卡因的大鼠中替代可卡因(10 mg / kg,i.p.)的能力。尽管具有纳摩尔DAT亲和力,但只有2β-Ph2COCH2-3β-4-Cl-Ph类似物完全替代了可卡因样的区分作用。尽管所有2β化合物均增加了运动,但只有2β-(4-ClPh)PhCOCH2-3β-4-Cl-Ph类似物具有可卡因样的功效。 2α-取代的化合物均未产生这些可卡因样作用。为了探索这些药物的分子机制,使用半胱氨酸可及性测定法探讨了它们对DAT构象的影响。以前的报道表明,与向内构象相比,可卡因在其向外(细胞外)构象中与DAT的结合亲和力高得多,而非典型DAT抑制剂(如苄索平)在与这些构象的亲和力上具有更大的相似性,并且据推测解释他们不同的行为影响。测试的所有2β和2α取代的化合物均以类似于可卡因的方式改变了DAT的半胱氨酸可及性。此外,计算机抑制剂-DAT复合物的分子动力学表明2-取代的化合物以可卡因样的方式在结合口袋中达到平衡。这些行为,生化和计算结果表明,芳基托烷类似物可以与DAT结合并稳定可卡因等向外的DAT构象,但产生的效果不同于可卡因。

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