Lazarus L H, Salvadori S, Balboni G, Tomatis R, Wilson W E
Laboratory of Molecular and Integrative Neuroscience, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709.
J Med Chem. 1992 Apr 3;35(7):1222-7. doi: 10.1021/jm00085a009.
A series of individual D-amino acid replacement analogues of deltorphin A, several of which were in combination with a His4 deletion, were used to probe alterations of side-chain orientation on peptide binding parameters with rat brain opioid receptors. Peptides with D-amino acids in residues 1, 3, and 5 exhibited diminished affinities primarily for delta receptors (88-1200-fold) with selectivity decreasing by factors of 13-64-fold relative to deltorphin A (Ki delta = 0.45 nM; Ki mu/Ki delta = 764): the aromatic side chains Tyr1 and Phe3, which lie in the N-terminal "message" domain and the aryl side chain of Leu5 in the C-terminal "address" domain, appear to play essential roles in conferring high delta affinity and selectivity. Although D-His4 only decreased delta affinity by 6-fold and selectivity by a factor of 4, His appears to be involved as an integral component of both domains: [des-His4]deltorphin A and [des-His4] analogues containing consecutive D-amino acid replacements in the remaining residues exhibited weak binding to delta receptors and poor delta selectivity. Substitution of D-Met2 in deltorphin A by D-Ala or D-Nle decreased delta selectivities 3-6-fold through an elevation in mu affinities; however, the converse replacement, D-Met for D-Ala2 in deltorphin B, diminished beta selectivity by an order of magnitude only through the loss in delta affinity. The data show that the high delta affinity and selectivity of deltorphins correlate with and require a strict stereospecificity of the amino acid residue side chains.
使用了一系列强啡肽A的单个D-氨基酸取代类似物,其中几种与His4缺失相结合,以探究肽与大鼠脑阿片受体结合参数时侧链取向的变化。在第1、3和5位残基含有D-氨基酸的肽对δ受体的亲和力主要降低(88 - 1200倍),相对于强啡肽A(Kiδ = 0.45 nM;Kiμ/Kiδ = 764),选择性降低了13 - 64倍:位于N端“信息”结构域的芳香族侧链Tyr1和Phe3以及C端“地址”结构域中Leu5的芳基侧链,似乎在赋予高δ亲和力和选择性方面起着至关重要的作用。尽管D-His4仅使δ亲和力降低了6倍,选择性降低了4倍,但His似乎作为两个结构域的一个组成部分参与其中:[去His4]强啡肽A和在其余残基中含有连续D-氨基酸取代的[去His4]类似物与δ受体的结合较弱,且δ选择性较差。用D-Ala或D-Nle取代强啡肽A中的D-Met2通过提高μ亲和力使δ选择性降低了3 - 6倍;然而,相反的取代,即用D-Met取代强啡肽B中的D-Ala2,仅通过δ亲和力的丧失使β选择性降低了一个数量级。数据表明,强啡肽的高δ亲和力和选择性与氨基酸残基侧链的严格立体特异性相关,并且需要这种严格的立体特异性。