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用于β-转角展示的最小肽支架:优化二硫键环化β-发夹中的链位置

A minimal peptide scaffold for beta-turn display: optimizing a strand position in disulfide-cyclized beta-hairpins.

作者信息

Cochran A G, Tong R T, Starovasnik M A, Park E J, McDowell R S, Theaker J E, Skelton N J

机构信息

Departments of Protein Engineering and Bioorganic Chemistry, Genentech, Inc., 1 DNA Way, South San Francisco, California 94080, USA.

出版信息

J Am Chem Soc. 2001 Jan 31;123(4):625-32. doi: 10.1021/ja003369x.

Abstract

Phage display of peptide libraries has become a powerful tool for the evolution of novel ligands that bind virtually any protein target. However, the rules governing conformational preferences in natural peptides are poorly understood, and consequently, structure-activity relationships in these molecules can be difficult to define. In an effort to simplify this process, we have investigated the structural stability of 10-residue, disulfide-constrained beta-hairpins and assessed their suitability as scaffolds for beta-turn display. Using disulfide formation as a probe, relative free energies of folding were measured for 19 peptides that differ at a one strand position. A tryptophan substitution promotes folding to a remarkable degree. NMR analysis confirms that the measured energies correlate well with the degree of beta-hairpin structure in the disulfide-cyclized peptides. Reexamination of a subset of the strand substitutions in peptides with different turn sequences reveals linear free energy relationships, indicating that turns and strand-strand interactions make independent, additive contributions to hairpin stability. Significantly, the tryptophan strand substitution is highly stabilizing with all turns tested, and peptides that display model turns or the less stable C'-C' ' turn of CD4 on this tryptophan "stem" are highly structured beta-hairpins in water. Thus, we have developed a small, structured beta-turn scaffold, containing only natural L-amino acids, that may be used to display peptide libraries of limited conformational diversity on phage.

摘要

肽库的噬菌体展示已成为一种强大的工具,可用于筛选能与几乎任何蛋白质靶点结合的新型配体。然而,人们对天然肽中构象偏好的调控规则了解甚少,因此,这些分子中的构效关系难以确定。为了简化这一过程,我们研究了10个残基、二硫键约束的β-发夹的结构稳定性,并评估了它们作为β-转角展示支架的适用性。以二硫键形成作为探针,测量了19种在单链位置不同的肽的相对折叠自由能。色氨酸取代能显著促进折叠。核磁共振分析证实,测得的能量与二硫键环化肽中β-发夹结构的程度密切相关。对具有不同转角序列的肽中部分链取代的重新研究揭示了线性自由能关系,表明转角和链间相互作用对发夹稳定性有独立的、累加的贡献。值得注意的是,色氨酸链取代对所有测试的转角都具有高度稳定作用,并且在这种色氨酸“茎”上展示模型转角或CD4较不稳定的C'-C''转角的肽在水中是高度结构化的β-发夹。因此,我们开发了一种仅包含天然L-氨基酸的小型结构化β-转角支架,可用于在噬菌体上展示构象多样性有限的肽库。

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