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双价苯乙胺类作为新型多巴胺转运体抑制剂:单一转运体中存在多个底物结合位点的证据。

Bivalent phenethylamines as novel dopamine transporter inhibitors: evidence for multiple substrate-binding sites in a single transporter.

机构信息

Department of Pharmacology, New York University School of Medicine, New York City, New York 10016, USA.

出版信息

J Neurochem. 2010 Mar;112(6):1605-18. doi: 10.1111/j.1471-4159.2010.06583.x. Epub 2010 Jan 12.

DOI:10.1111/j.1471-4159.2010.06583.x
PMID:20067583
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2914574/
Abstract

Bivalent ligands--compounds incorporating two receptor-interacting moieties linked by a flexible chain--often exhibit profoundly enhanced binding affinity compared with their monovalent components, implying concurrent binding to multiple sites on the target protein. It is generally assumed that neurotransmitter sodium symporter (NSS) proteins, such as the dopamine transporter (DAT), contain a single domain responsible for recognition of substrate molecules. In this report, we show that molecules possessing two substrate-like phenylalkylamine moieties linked by a progressively longer aliphatic spacer act as progressively more potent DAT inhibitors (rather than substrates). One compound bearing two dopamine (DA)-like pharmacophoric 'heads' separated by an 8-carbon linker achieved an 82-fold gain in inhibition of [(3)H] 2beta-carbomethoxy-3beta-(4-fluorophenyl)-tropane (CFT) binding compared with DA itself; bivalent compounds with a 6-carbon linker and heterologous combinations of DA-, amphetamine- and beta-phenethylamine-like heads all resulted in considerable and comparable gains in DAT affinity. A series of short-chain bivalent-like compounds with a single N-linkage was also identified, the most potent of which displayed a 74-fold gain in binding affinity. Computational modelling of the DAT protein and docking of the two most potent bivalent (-like) ligands suggested simultaneous occupancy of two discrete substrate-binding domains. Assays with the DAT mutants W84L and D313N--previously employed by our laboratory to probe conformation-specific binding of different structural classes of DAT inhibitors--indicated a bias of the bivalent ligands for inward-facing transporters. Our results strongly indicate the existence of multiple DAT substrate-interaction sites, implying that it is possible to design novel types of DAT inhibitors based upon the 'multivalent ligand' strategy.

摘要

双价配体——由通过柔性链连接的两个受体相互作用部分组成的化合物——通常表现出与单价成分相比显著增强的结合亲和力,这意味着同时结合到靶蛋白上的多个位点。通常认为,神经递质钠转运体(NSS)蛋白,如多巴胺转运体(DAT),包含一个负责识别底物分子的单一结构域。在本报告中,我们表明,具有两个通过逐渐更长的脂肪族间隔物连接的底物样苯丙烷基胺部分的分子作为更有效的 DAT 抑制剂(而不是底物)起作用。一个具有两个多巴胺(DA)样药效团“头”的化合物,通过 8 个碳原子的连接体分开,与 DA 本身相比,抑制[(3)H]2β-羧甲氧基-3β-(4-氟苯基)-托烷(CFT)结合的抑制作用提高了 82 倍;具有 6 个碳原子连接体和 DA、苯丙胺和β-苯乙胺样头的异源组合的双价化合物都导致 DAT 亲和力有相当大的提高。还鉴定了一系列具有单个 N 连接的短链双价样化合物,其中最有效的化合物显示出 74 倍的结合亲和力提高。DAT 蛋白的计算模型和两种最有效的双价(类似)配体的对接表明,同时占据两个离散的底物结合域。使用我们实验室先前用于探测不同结构类 DAT 抑制剂的构象特异性结合的 DAT 突变体 W84L 和 D313N 的测定表明,双价配体偏向于内向转运体。我们的结果强烈表明存在多个 DAT 底物相互作用位点,这意味着有可能基于“多价配体”策略设计新型 DAT 抑制剂。

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