与人缓激素B2受体具有高亲和力的新型假多肽。

Peptide research Pub Date : 1995-01-01
S Chakravarty, M Connolly, D J Kyle
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引用次数: 0

摘要

我们最近提出了一个大鼠缓激肽B2受体结合模型,该模型是基于对细菌视紫红质七个跨膜结构域的结构同源性建模,广泛的构象搜索和实验诱变结果构建的。在此基础上,设计并报道了一种新的第三代伪肽拮抗剂NPC 18325 (D-Arg1-Arg2-[氨基三烷醇]3-Ser4-D-Tic5-Oic6++ +- arg7) (Ki = 440 nM,豚鼠回肠)。NPC 18325已被提出采用c端β匝与n端正电荷通过线性12碳链间隔剂分离。实验表明,组成c端的四种氨基酸在中性pH水溶液中优先采用β转。我们现在提出了一系列与NPC 18325相关的肽,这些肽探索了碳链长度与人类缓激素B2受体亲和力之间的关系。结果表明,这些假肽与链长存在构效关系(SAR),与人缓激肽受体的亲和力优于与豚鼠回肠源B2受体的亲和力。其中,肽I(12-亚甲基连接物)的Ki值为31 nM,肽V(4-亚甲基连接物)的Ki值为471 nM。还描述了关于构象和疏水性的含义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel pseudopeptides with high affinities for the human bradykinin B2 receptor.

We recently proposed a model of bradykinin bound to the rat bradykinin B2 receptor that is constructed on the basis of structural homology modeling to the criomicroscopic structure of the seven transmembrane domains of bacteriorhodopsin, extensive conformational searches and experimental mutagenesis results. On the basis of that model, a novel third-generation pseudopeptide antagonist, NPC 18325 (D-Arg1-Arg2-[aminotridecanoyl]3-Ser4-D-Tic5-Oic6++ +-Arg7) (Ki = 440 nM, guinea pig ileum), was designed and also reported. NPC 18325 has been proposed to adopt a C-terminal beta turn separated from N-terminal positive charges by a linear 12 carbon chain spacer. Experimentally, the four amino acids making up the C-terminus have been shown by NMR to preferentially adopt a beta turn at neutral pH in aqueous solution. We now present a series of peptides, related to and including NPC 18325, that explore the relationship between the length of the carbon chain and the affinity to the human bradykinin B2 receptor. The results show that there is a structure-activity relationship (SAR) associated with the chain length and that these pseudopeptides have better affinity to the human bradykinin receptor than they have to the guinea pig ileal-derived B2 receptor. Specifically, peptide I (a 12-methylene linker) had a measured Ki of 31 nM and peptide V (a 4-methylene linker) had a Ki of 471 nM. Implications regarding conformation and hydrophobicity are also described.

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