首页> 外文期刊>Journal of Medicinal Chemistry >2',6'-Dimethyltyrosine)dynorphin A(1-11)-NH2 analogues lacking an N-terminal amino group: potent and selective kappa opioid antagonists.
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2',6'-Dimethyltyrosine)dynorphin A(1-11)-NH2 analogues lacking an N-terminal amino group: potent and selective kappa opioid antagonists.

机译:缺乏N端氨基的2',6'-二甲基酪氨酸)强啡肽A(1-11)-NH2类似物:有效的和选择性的κ阿片类拮抗剂。

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Recent studies showed that dermorphin and enkephalin analogues containing two methyl groups at the 2',6'-positions of the Tyr(1) aromatic ring and lacking an N-terminal amino group were moderately potent delta and mu opioid antagonists. These results indicate that a positively charged N-terminal amino group may be essential for signal transduction but not for receptor binding and suggested that its deletion in agonist opioid peptides containing an N-terminal 2',6'-dimethyltyrosine (Dmt) residue may represent a general way to convert them into antagonists. In an attempt to develop dynorphin A (Dyn A)-derived kappa opioid antagonists, we prepared analogues of [Dmt(1)]Dyn A(1-11)-NH2 (1), in which the N-terminal amino group was either omitted or replaced with a methyl group. This was achieved by replacement of Tyr(1) with 3-(2,6-dimethyl-4-hydroxyphenyl)propanoic acid (Dhp) or (2S)-2-methyl-3-(2,6-dimethyl-4-hydroxyphenyl)propanoic acid [(2S)-Mdp]. Compounds were tested in the guinea pig ileum and mouse vas deferens bioassays and in rat and guinea pig brain membrane receptor binding assays. All analogues turned out to be potent kappa antagonists against Dyn A(1-13) and the non-peptide agonist U50,488 and showed only weak mu and delta antagonist activity. The most potent and most selective kappa antagonist of the series was [(2S)-Mdp(1)]Dyn A(1-11)-NH2 (5, dynantin), which showed subnanomolar kappa antagonist potency against Dyn A(1-13) and very high kappa selectivity both in terms of its K(e) values determined against kappa, mu, and delta agonists and in terms of its ratios of kappa, mu, and delta receptor binding affinity constants. Dynantin is the first potent and selective Dyn A-derived kappa antagonist known and may complement the non-peptide kappa antagonists norbinaltorphimine and GNTI as a pharmacological tool in opioid research.
机译:最近的研究表明,在吗啡和脑啡肽类似物的Tyr(1)芳香环的2',6'-位置上含有两个甲基,并且缺乏N端氨基,它们是中等强度的δ和μ阿片类拮抗剂。这些结果表明,带正电荷的N末端氨基对于信号转导可能是必不可少的,但对于受体结合却不是,并且表明其在包含N末端2',6'-二甲基酪氨酸(Dmt)残基的激动剂阿片肽中的缺失可能代表将它们转变为拮抗剂的一般方法。为了开发强啡肽A(Dyn A)衍生的κ阿片拮抗剂,我们制备了[Dmt(1)] Dyn A(1-11)-NH2(1)的类似物,其中N端氨基为省略或被甲基取代。这是通过用3-(2,6-二甲基-4-羟基苯基)丙酸(Dhp)或(2S)-2-甲基-3-(2,6-二甲基-4-羟基苯基)取代Tyr(1)来实现的)丙酸[(2S)-Mdp]。在豚鼠回肠和小鼠输精管生物测定以及大鼠和豚鼠脑膜受体结合测定中测试了化合物。事实证明,所有类似物都是针对Dyn A(1-13)和非肽激动剂U50,488的有效kappa拮抗剂,并且仅表现出弱的mu和delta拮抗剂活性。该系列中最有效和最具选择性的kappa拮抗剂是[(2S)-Mdp(1)] Dyn A(1-11)-NH2(5,dynantin),显示出对Dyn A(1-13)的亚纳摩尔kappa拮抗剂效力)和非常高的kappa选择性(无论是针对kappa,mu和delta激动剂确定的K(e)值,还是针对kappa,mu和delta受体结合亲和力常数的比率)。 Dynantin是已知的第一个有效且选择性的Dyn A衍生的kappa拮抗剂,可以作为阿片类药物研究的药理学工具补充非肽kappa拮抗剂norbinaltorphimine和GNTI。

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