Mosberg H I, Lomize A L, Wang C, Kroona H, Heyl D L, Sobczyk-Kojiro K, Ma W, Mousigian C, Porreca F
College of Pharmacy, University of Michigan, Ann Arbor 48109-1065.
J Med Chem. 1994 Dec 9;37(25):4371-83. doi: 10.1021/jm00051a015.
A series of analogues of the conformationally restricted delta opioid receptor selective tetrapeptide Tyr-c[D-Cys-Phe-D-Pen]OH (JOM 13) was prepared in which the conformationally labile Tyr residue was replaced with several less flexible tyrosine analogues. Among these tyrosine analogues were the bicyclic structures 1,2,3,4-tetrahydro-7-hydroxyisoquinoline-3-carboxylic acid (HO-Tic), 2-amino-6-hydroxytetralin-2-carboxylic acid (Hat), and 2-amino-5-hydroxyindan-2-carboxylic acid (Hai) in which rotations about the C alpha-C beta and C beta-C gamma bonds are restricted due to cyclization of the side chain to the backbone. Also examined were analogues in which tyrosine was replaced with either trans-3-(4'-hydroxyphenyl)proline (t-Hpp) or cis-3-(4'-hydroxyphenyl)proline (c-Hpp), residues in which rotations about C alpha-C beta, but not C beta-C gamma, are restricted. Both the t-Hpp1 and c-Hpp1 analogues displayed delta receptor binding affinity similar to the parent Tyr1-containing peptide, while the D-Hat1, L-Hat1, and L-Hai1 analogues exhibited somewhat lower affinity. The results observed for the t-Hpp1 and c-Hpp1 analogues are particularly significant since these two residues have little accessible conformational space in common. Since the binding conformation of residue 1 must be included in this limited conformational intersection, its elucidation is facilitated. Bioassay results from guinea pig ileum and mouse vas deferens preparations are in general agreement with the binding results; however some potency discrepancies are observed. These discrepancies may reflect different selectivities among delta receptor subtypes for the analogues or may represent differing efficacies among these conformationally restricted peptides. The conformational properties of the parent tetrapeptide and the residue 1-modified analogues were studied by molecular mechanics computations. All these peptides share a common rigid tripeptide cycle with a single energetically preferred backbone conformation and three different conformers of the D-Cys, D-Pen disulfide bridge, two of which are observed in the solid state and in aqueous solution, as previously determined from X-ray crystallography and 1H NMR spectroscopy data (Lomize, A; et al. J. Am. Chem. Soc. 1994, 116, 429-436). All the peptides have similar sets of low-energy conformations of their common flexible elements, the Phe3 side chain and the peptide group between the first residue and the rigid tripeptide cycle. However, possible conformations of the first residue differ and depend on the covalent constraints incorporated into the side chain.(ABSTRACT TRUNCATED AT 400 WORDS)
制备了一系列构象受限的δ阿片受体选择性四肽Tyr-c[D-Cys-Phe-D-Pen]OH(JOM 13)的类似物,其中构象不稳定的Tyr残基被几种柔性较小的酪氨酸类似物取代。这些酪氨酸类似物包括双环结构1,2,3,4-四氢-7-羟基异喹啉-3-羧酸(HO-Tic)、2-氨基-6-羟基四氢萘-2-羧酸(Hat)和2-氨基-5-羟基茚满-2-羧酸(Hai),由于侧链与主链环化,围绕Cα-Cβ和Cβ-Cγ键的旋转受到限制。还研究了酪氨酸被反式-3-(4'-羟基苯基)脯氨酸(t-Hpp)或顺式-3-(4'-羟基苯基)脯氨酸(c-Hpp)取代的类似物,其中围绕Cα-Cβ而非Cβ-Cγ的旋转受到限制。t-Hpp1和c-Hpp1类似物均表现出与含Tyr1的母体肽相似的δ受体结合亲和力,而D-Hat1、L-Hat1和L-Hai1类似物的亲和力略低。t-Hpp1和c-Hpp1类似物的结果尤为重要,因为这两个残基几乎没有共同的可及构象空间。由于残基1的结合构象必须包含在这个有限的构象交集中,因此有助于对其进行阐明。豚鼠回肠和小鼠输精管制剂的生物测定结果与结合结果总体一致;然而,观察到一些效价差异。这些差异可能反映了类似物对δ受体亚型的不同选择性,或者可能代表了这些构象受限肽之间不同的效力。通过分子力学计算研究了母体四肽和残基1修饰类似物的构象性质。所有这些肽都有一个共同的刚性三肽环,具有单一能量上优选的主链构象和D-Cys、D-Pen二硫键的三种不同构象,其中两种在固态和水溶液中观察到,如先前根据X射线晶体学和1H NMR光谱数据所确定的(洛米泽,A;等人。《美国化学会志》1994年,116卷,429 - 436页)。所有肽在其共同的柔性元件、Phe3侧链以及第一个残基与刚性三肽环之间的肽基上具有相似的低能量构象集。然而,第一个残基的可能构象不同,并且取决于引入侧链中的共价限制。(摘要截断于400字)