Ambo Akihiro, Niizuma Hideko, Sasaki Ai, Kohara Hirokazu, Sasaki Yusuke
Tohoku Pharmaceutical University, Sendai, Japan.
Bioorg Med Chem Lett. 2003 Apr 7;13(7):1269-72. doi: 10.1016/s0960-894x(03)00110-0.
To investigate the value of the 2',6'-dimethylphenylalanine (Dmp) residue as an aromatic amino acid substitution, we prepared analogues of the mu opioid receptor-selective dermorphin tetrapeptide Tyr-D-Arg-Phe-betaAla-NH(2) (YRFB) in which Dmp or its D-isomer replaced Tyr(1) or Phe(3). Replacing Phe(3) with Dmp essentially tripled mu receptor affinity and the receptor's in vitro biological activities as determined with the guinea pig ileum (GPI) assay but did not change delta receptor affinity. Despite an inversion of the D configuration at this position, mu receptor affinity and selectivity remained comparable with those of the L-isomer. Replacing the N-terminal Tyr residue with Dmp produced a slightly improved mu receptor affinity and a potent GPI activity, even though the substituted compound lacks the side chain phenolic hydroxyl group at the N-terminal residue. Dual substitution of Dmp for Tyr(1) and Phe(3) produced significantly improved mu receptor affinity and selectivity compared with the singly substituted analogues. Subcutaneous injection of the two analogues, [Dmp(3)]YRFB and [Dmp(1)]YRFB, in mice produced potent analgesic activities that were greater than morphine in the formalin test. These lines of evidence suggest that the Dmp residue would be an effective aromatic amino acid surrogate for both Tyr and Phe in the design and development of novel opioid mimetics.
为了研究2',6'-二甲基苯丙氨酸(Dmp)残基作为芳香族氨基酸替代物的价值,我们制备了μ阿片受体选择性的皮肤吗啡四肽Tyr-D-Arg-Phe-βAla-NH₂(YRFB)的类似物,其中Dmp或其D-异构体替代了Tyr(1)或Phe(3)。用Dmp替代Phe(3)使μ受体亲和力以及豚鼠回肠(GPI)试验所测定的受体体外生物学活性基本增加了两倍,但未改变δ受体亲和力。尽管该位置的D构型发生了反转,但μ受体亲和力和选择性与L-异构体的仍相当。用Dmp替代N端的Tyr残基产生了略有提高的μ受体亲和力和强大的GPI活性,尽管被取代的化合物在N端残基处缺乏侧链酚羟基。与单取代类似物相比,用Dmp同时替代Tyr(1)和Phe(3)产生了显著提高的μ受体亲和力和选择性。在小鼠中皮下注射两种类似物[Dmp(3)]YRFB和[Dmp(1)]YRFB产生了强大的镇痛活性,在福尔马林试验中比吗啡的活性更强。这些证据表明,在新型阿片样物质模拟物的设计和开发中,Dmp残基将是Tyr和Phe的有效芳香族氨基酸替代物。