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首页> 外文期刊>Journal of Medicinal Chemistry >Agonist activity at the kinin B1 receptor: structural requirements of the central tetrapeptide.
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Agonist activity at the kinin B1 receptor: structural requirements of the central tetrapeptide.

机译:激肽B1受体的激动剂活性:中央四肽的结构要求。

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摘要

A series of analogues of desArg(9)-Lys-bradykinin (BK), Lys-Arg-X-Ac(n)c-X-Ser-Pro-Phe, in which the spacer X-Ac(n)c-X replaces the central tetrapeptide Pro-Pro-Gly-Phe of BK, have been synthesized and functionally characterized at the B1 receptor. The 1-aminocycloalkane-1-carboxylic acids (Ac(6)c, Ac(7)c, Ac(8)c, Ac(9)c, Ac(12)c) were incorporated to impart conformational constraint and probe the importance of the hydrophobicity of the residue in the central position. The linker is varied in length (X = Gly, betaAla, gammaAbu) to examine the optimal distance between the biologically important residues at the N- and C-termini. The biological assays indicate that the optimal length is obtained with X = Gly, with reduced activities for the longer linkers. Although the size of the central cyclic amino acid does not significantly alter the biological activity, the hydrophobic residue Ac(n)c which may tether the peptide in the membrane environment is required (Lys-Arg-Gly-Gly-Gly-Ser-Pro-Phe is inactive). Two of the analogues, Lys-Arg-Gly-Ac(7)c-Gly-Ser-Pro-Phe and Lys-Arg-gammaAbu-Ac(7)c-gammaAbu-Ser-Pro-Phe, have been structurally characterized in the presence of a zwitterionic lipid environment by high-resolution NMR. Both compounds have similar structural features, differing greatest in the distance between the termini (9 and 15 A for the Gly- and gammaAbu-containing analogues, respectively). The correlation of the smaller distance with activity at the B1 receptor is in complete accord with the results from our previous examination of Lys-Arg-NH-(CH(2))(11)-CO-Ser-Pro-Phe. With the results from this series of compounds we are beginning to define some of the molecular descriptors important for activity at the B1 BK receptor.
机译:desArg(9)-Lys-缓激肽(BK),Lys-Arg-X-Ac(n)cX-Ser-Pro-Phe的一系列类似物,其中间隔基X-Ac(n)cX取代了中央四肽BK的Pro-Pro-Gly-Phe已合成并在B1受体上进行了功能表征。 1-氨基环烷-1-羧酸(Ac(6)c,Ac(7)c,Ac(8)c,Ac(9)c,Ac(12)c)被引入以赋予构象约束并探讨其重要性残基在中心位置的疏水性。连接子的长度不同(X = Gly,betaAla,gammaAbu),以检查N-和C-末端生物学重要残基之间的最佳距离。生物学分析表明,最佳的长度是X = Gly,更长的接头活性降低。尽管中心环状氨基酸的大小不会显着改变生物活性,但需要疏水性残基Ac(n)c可能将肽束缚在膜环境中(Lys-Arg-Gly-Gly-Gly-Ser-Pro -Phe无效)。 Lys-Arg-Gly-Ac(7)c-Gly-Ser-Pro-Phe和Lys-Arg-gammaAbu-Ac(7)c-gammaAbu-Ser-Pro-Phe的两个类似物的结构特征如下高分辨率NMR分析两性离子脂质环境的存在。两种化合物都具有相似的结构特征,末端之间的距离差异最大(含Gly和gammaAbu的类似物分别为9和15 A)。较小距离与B1受体活性的相关性与我们先前对Lys-Arg-NH-(CH(2))(11)-CO-Ser-Pro-Phe的检查结果完全一致。利用这一系列化合物的结果,我们开始定义一些对于B1 BK受体活性重要的分子描述符。

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