Balboni G, Guerrini R, Salvadori S, Tomatis R, Bryant S D, Bianchi C, Attila M, Lazarus L H
Department of Pharmaceutical Sciences, University of Ferrara, Italy.
Biol Chem. 1997 Jan;378(1):19-29. doi: 10.1515/bchm.1997.378.1.19.
Discovery of high affinity and ultraselective delta opioid dipeptide antagonists composed of 2',6'-dimethyl-L-tyrosyl (Dmt) and 1,2,3,4-tetrahydroisoquinoline-3-carboxylic (Tic) served as the basis for the conformationally restricted diketopiperazine cyclo(Dmt-Tic) and related open chain analogues. These peptides primarily bind to delta opioid receptors: c(Dmt-Tic) displayed 30- to 50-fold higher delta affinity (Ki delta) than its diastereo-isomeric analogues and more than 4000-fold greater than its Tyr cognate; all of the c(Tyr-Tic) analogues were essentially inactive; c[(N-methyl)Dmt-Tic] lost 5-fold in Ki delta, while Ki mu increased 10-fold to yield a nonselective peptide; and the c(Dmt-Phe) series exhibited considerably reduced binding which indicated a synergism between Dmt and Tic in the binding mechanism. Whereas acetyl-Dmt-Tic linear peptides weakly interacted with opioid receptors, Ac-Dmt-Tic-NH2, exhibited better delta antagonist activity than c(Dmt-Tic) and greater delta receptor selectivity (Ki mu/Ki delta = 570). A three point attachment hypothesis for the interaction between c(Dmt-Tic) and the delta receptor was proposed: hydrophobicity imparted by the aromatic rings and the methyl groups of Dmt, hydrogen bonding through the tyramine hydroxyl group, and cation-pi interactions were suggested as contributing factors in binding the diketopiperazine in the receptor pocket. Although c(Dmt-Tic) exhibited a weak antagonist activity with mouse vas deferens, this diketopiperazine may provide a scaffolding for the formation of more potent antagonists for potential therapeutic applications.
由2',6'-二甲基-L-酪氨酸(Dmt)和1,2,3,4-四氢异喹啉-3-羧酸(Tic)组成的高亲和力和超选择性δ阿片肽拮抗剂的发现,为构象受限的二酮哌嗪环(Dmt-Tic)和相关开链类似物奠定了基础。这些肽主要与δ阿片受体结合:环(Dmt-Tic)对δ受体的亲和力(Kiδ)比其非对映异构体类似物高30至50倍,比其酪氨酸同源物高4000多倍;所有环(Tyr-Tic)类似物基本无活性;环[(N-甲基)Dmt-Tic]的Kiδ降低了5倍,而Kiμ增加了10倍,产生了一种非选择性肽;环(Dmt-Phe)系列的结合力显著降低,这表明Dmt和Tic在结合机制中存在协同作用。虽然乙酰-Dmt-Tic线性肽与阿片受体的相互作用较弱,但Ac-Dmt-Tic-NH2表现出比环(Dmt-Tic)更好的δ拮抗剂活性和更高的δ受体选择性(Kiμ/Kiδ = 570)。提出了环(Dmt-Tic)与δ受体相互作用的三点结合假说:Dmt的芳香环和甲基赋予的疏水性、通过酪胺羟基形成的氢键以及阳离子-π相互作用被认为是二酮哌嗪在受体口袋中结合的促成因素。尽管环(Dmt-Tic)对小鼠输精管表现出较弱的拮抗剂活性,但这种二酮哌嗪可能为形成更有效的拮抗剂提供支架,用于潜在的治疗应用。