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三种环状六肽NK-2拮抗剂的比较构象分析及体外药理学评价

Comparative conformational analysis and in vitro pharmacological evaluation of three cyclic hexapeptide NK-2 antagonists.

作者信息

Wollborn U, Brunne R M, Harting J, Hölzemann G, Leibfritz D

机构信息

Institute for Organic Chemistry, Bremen University, Germany.

出版信息

Int J Pept Protein Res. 1993 Apr;41(4):376-84. doi: 10.1111/j.1399-3011.1993.tb00453.x.

DOI:10.1111/j.1399-3011.1993.tb00453.x
PMID:8388367
Abstract

The conformational analysis of three cyclic hexapeptides is presented. Cyclo-(-Gln6-Trp7-Phe8-Gly9-Leu10-D-Met11-) (1) and cyclo-(-Gln6-Trp7-Phe8-Gly9-Leu10-Met11-) (2) are NK-2 antagonists in the hamster trachea assay, whereas cyclo-(-Gln6-Trp7-Phe8-(R)-Gly9-[ANC-2]Leu10-Met11+ ++-) (3), where Gly9[ANC-2]Leu10 represents (2S)-2-((3R)-3-amino-2-oxo-1-pyrrolidinyl)-4-methylpentanoyl, is inactive as agonist and antagonist in this assay. In DMSO, the NMR results cannot be interpreted as being consistent with a single conformation. However, the combined interpretation of results from NMR spectroscopy, restrained molecular dynamics simulations with application of proton-proton distance information from ROESY spectra, and pharmacological results leads to a reduced number of conformational domains for each peptide, which can be compared with each other and may be classified as responsible for their biological activity. Trying to match the conformational domains approximately with regular beta- and gamma-turns, we find a gamma n-turn at the position of the methionine occurring in all peptides. For the active peptides 1 and 2 we arrive at an inverse gamma i-turn at Phe8, and beta I'- or beta II-turns with Gly9 and Leu10 at the corner positions, these beta-turns having a similar topology with respect to the linking peptide unit. Other conformational domains common to only 1 and 2 support their classification as responsible for the biological activity.

摘要

本文介绍了三种环状六肽的构象分析。环(-Gln6-Trp7-Phe8-Gly9-Leu10-D-Met11-)(1)和环(-Gln6-Trp7-Phe8-Gly9-Leu10-Met11-)(2)在仓鼠气管试验中是NK-2拮抗剂,而环(-Gln6-Trp7-Phe8-(R)-Gly9-[ANC-2]Leu10-Met11+ ++-)(3),其中Gly9[ANC-2]Leu10代表(2S)-2-((3R)-3-氨基-2-氧代-1-吡咯烷基)-4-甲基戊酰基,在该试验中作为激动剂和拮抗剂均无活性。在二甲亚砜中,核磁共振结果无法解释为与单一构象一致。然而,结合核磁共振光谱结果、应用来自ROESY光谱的质子-质子距离信息进行的受限分子动力学模拟以及药理学结果,每种肽的构象域数量减少,这些构象域可以相互比较,并可归类为与其生物活性相关。试图将构象域大致与规则的β-和γ-转角匹配,我们发现在所有肽中蛋氨酸位置存在一个γ n-转角。对于活性肽1和2,我们在Phe8处得到一个反向γ i-转角,在转角位置有Gly9和Leu10的β I'-或β II-转角,这些β-转角相对于连接肽单元具有相似的拓扑结构。仅1和2共有的其他构象域支持它们作为生物活性相关的分类。

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