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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Tuning the beta-turn segment in designed peptide beta-hairpins: Construction of a stable type I ' beta-turn nucleus and hairpin-helix transition promoting segments
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Tuning the beta-turn segment in designed peptide beta-hairpins: Construction of a stable type I ' beta-turn nucleus and hairpin-helix transition promoting segments

机译:调整设计的肽β-发夹中的β转角片段:构建稳定的I型β'转角核和发夹螺旋转变促进片段

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摘要

Designed octapeptides Boc-Leu-Val-Val-Aib-(D)Xxx-Leu- Val-Val-OMe ((D)Xxx = (D)Ala, 3a; (D)Val, 3c and (D)Pro, 5a) and Boc-Leu-Phe-Val-Aib-DAla-Leu-Phe-Val-OMe (3b) have been investigated to construct models of a stable type I' beta-turn nucleated hairpin and to generate systems for investigating helix-hairpin conformational transitions. Peptide 5a, which contains a central Aib-(D)Pro segment, is shown to adopt a stable type I' beta-turn nucleated hairpin structure, stabilized by four cross-strand hydrogen bonds. The stability of the structure in diverse solvents is established by the observation of all diagnostic NOEs expected in a beta-hairpin conformation. Replacement of (D)Pro5 by (D)Ala/(D)Val (3a-c) results in sequences that form beta-hairpins in hydrogen bonding solvents like CD3OH and DMSO-d(6). However, in CDCl3 evidence for population of helical conformations is obtained. Peptide 6b (Boc-Leu-Phe-Val-Aib-Aib-Leu-Phe-Val-OMe), which contains a centrally positioned Aib-Aib segment, provides a clear example of a system, which exhibits a helical conformation in CDCl3 and a significant population of both helices and hairpins in CD3OH and DMSO-d(6). The coexistence of multiple conformations is established by the simultaneous observation of diagnostic NOEs. Control over stereochemistry of the central beta-turn permits generation of models for robust beta-hairpins and also for the construction of systems that may be used to probe helix-hairpin conformational transitions. (c) 2006 Wiley Periodicals, Inc.
机译:设计八肽Boc-Leu-Val-Val-Aib-(D)Xxx-Leu-Val-Val-OMe((D)Xxx =(D)Ala,3a;(D)Val,3c和(D)Pro,5a )和Boc-Leu-Phe-Val-Aib-DAla-Leu-Phe-Val-OMe(3b)已进行研究,以构建稳定的I'型β-转核形发夹模型并生成用于研究螺旋-发夹的系统构象转变。包含中央Aib-(D)Pro片段的肽5a被证明采用了稳定的I'型β环有核发夹结构,由四个交叉链氢键稳定。通过观察所有期望的β-发夹结构的诊断NOE,可以确定在各种溶剂中结构的稳定性。用(D)Ala /(D)Val(3a-c)取代(D)Pro5导致序列在CD3OH和DMSO-d(6)等氢键键合溶剂中形成β-发夹。然而,在CDCl3中获得了螺旋构象的证据。肽6b(Boc-Leu-Phe-Val-Aib-Aib-Leu-Phe-Val-OMe)包含一个位于中心的Aib-Aib节段,提供了一个清晰的系统实例,该系统在CDCl3和CD3OH和DMSO-d(6)中有大量的螺旋和发夹。通过同时观察诊断性NOE,可以确定多种构象的共存。对中央β-转体的立体化学的控制允许生成健壮的β-发夹的模型,并且还允许构建可用于探测螺旋-发夹构象转变的系统。 (c)2006年Wiley Periodicals,Inc.

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