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Delta opioidmimetic antagonists: prototypes for designing a new generation of ultraselective opioid peptides.

机译:Delta阿片样物质拮抗剂:用于设计新一代超选择性阿片肽的原型。

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摘要

BACKGROUND: Tyr-Tic (1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid) and Tyr-Tic-Ala were the first peptides with delta opioid antagonist activity lacking Phe, considered essential for opioid activity based on the N-terminal tripeptide sequence (Tyr-D-Xaa-Phe) of amphibian skin opioids. Analogs were then designed to restrain the rotational flexibility of Tyr by the substitution of 2,6-dimethyl-L-tyrosine (Dmt). MATERIALS AND METHODS: Tyr and Dmt peptides were synthesized by solid phase and solution methods using Fmoc technology or condensing Boc-Dmt-OH or Boc-Tyr(But)-OH with H-L-Tic-OBut or H-D-Tic-OBut, respectively. Peptides were purified (> 99%) by HPLC and characteristics determined by 1H-NMR, FAB-MS, melting point, TLC, and amino acid analyses. RESULTS: H-Dmt-Tic-OH had high affinity (Ki delta = 0.022 nM) and extraordinary selectivity (Ki mu/Ki delta = 150,000); H-Dmt-Tic-Ala-OH had a Ki delta = 0.29 nM and delta selectivity = 20,000. Affinity and selectivity increased 8700- and 1000-fold relative to H-Tyr-Tic-OH, respectively. H-Dmt-Tic-OH and H-Dmt-Tic-NH2 fitted one-site receptor binding models (eta = 0.939-0.987), while H-Dmt-Tic-ol, H-Dmt-Tic-Ala-OH and H-Dmt-Tic-Ala-NH2 best fitted two-site models (eta = 0.708-0.801, F 18.9-26.0, p < 0.0001). Amidation increased mu affinity by 10- to 100-fold and acted synergistically with D-Tic2 to reverse selectivity (delta-->mu). Dmt-Tic di- and tripeptides exhibited delta antagonist bioactivity (Ke = 4-66 nM) with mouse vas deferens and lacked agonist mu activity (> 10 microM) in guinea-pig ileum preparations. Dmt-Tic analogs weakly interacted with kappa receptors in the 1 to > 20 microM range. CONCLUSIONS: Dmt-Tic opioidmimetic peptides represent a highly potent class of opioid peptide antagonists with greater potency than the nonopioid delta antagonist naltrindole and have potential application as clinical and therapeutic compounds.
机译:背景:Tyr-Tic(1,2,3,4-四氢异喹啉-3-羧酸)和Tyr-Tic-Ala是最早具有δ阿片拮抗剂活性而缺乏Phe的肽,被认为对于基于N末端的阿片类药物活性至关重要两栖类皮肤阿片样物质的三肽序列(Tyr-D-Xaa-Phe)。然后设计类似物以通过取代2,6-二甲基-L-酪氨酸(Dmt)来限制Tyr的旋转柔性。材料与方法:Tyr和Dmt肽是使用Fmoc技术通过固相和溶液法或将Boc-Dmt-OH或Boc-Tyr(But)-OH与H-L-Tic-OBut或H-D-Tic-OBut缩合而合成的。通过HPLC纯化肽(> 99%),并通过1 H-NMR,FAB-MS,熔点,TLC和氨基酸分析确定特征。结果:H-Dmt-Tic-OH具有很高的亲和力(Ki delta = 0.022 nM)和非凡的选择性(Ki mu / Ki delta = 150,000); H-Dmt-Tic-Ala-OH的Ki delta = 0.29 nM,delta选择性= 20,000。相对于H-Tyr-Tic-OH,亲和力和选择性分别提高了8700和1000倍。 H-Dmt-Tic-OH和H-Dmt-Tic-NH2拟合了一个位点受体结合模型(eta = 0.939-0.987),而H-Dmt-Tic-ol,H-Dmt-Tic-Ala-OH和H -Dmt-Tic-Ala-NH2最适合两点模型(eta = 0.708-0.801,F 18.9-26.0,p <0.0001)。酰胺化使mu亲和力增加10到100倍,并与D-Tic2协同作用以逆转选择性(delta-> mu)。在豚鼠回肠制剂中,Dmt-Tic二肽和三肽对小鼠输精管表现出δ拮抗剂生物活性(Ke = 4-66 nM),并且缺乏激动剂mu活性(> 10 microM)。 Dmt-Tic类似物与1至> 20 microM范围内的kappa受体弱相互作用。结论:Dmt-Tic阿片样肽代表了一类高度有效的阿片肽拮抗剂,其效力高于非阿片类δ拮抗剂纳曲酮,并且具有作为临床和治疗化合物的潜在应用。

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