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二硫键对β-发夹稳定性贡献的上下文依赖性。

Context-dependence of the contribution of disulfide bonds to beta-hairpin stability.

作者信息

Santiveri Clara M, León Esther, Rico Manuel, Jiménez M Angeles

机构信息

Instituto de Química-Física Rocasolano, Consejo Superior de Investigaciones Científicas, Serrano 119, 28006 Madrid, Spain.

出版信息

Chemistry. 2008;14(2):488-99. doi: 10.1002/chem.200700845.

Abstract

Incorporation of disulfide bonds to stabilize protein and peptide structures is not always a successful strategy. To advance current knowledge on the contribution of disulfide bonds to beta-hairpin stability, a previously reported beta-hairpin-forming peptide was taken as a template to design a series of Cys-containing peptides. The conformational behavior of these peptides in their oxidized, disulfide-cyclized peptides, and reduced, linear peptides, was investigated on the basis of NMR parameters: NOEs, and 1H and 13C chemical shifts. We found that the effect of disulfide bonds on beta-hairpin stability depends on its location within the beta-hairpin structure, being very small or even destabilizing when connecting two hydrogen-bonded facing residues. When the disulfide bond is linking non-hydrogen-bonded facing residues, we estimated that its contribution to the free-energy change of beta-hairpin folding is approximately -1.0 kcal mol(-1). This value is larger than those reported for most beta-hairpin-stabilizing cross-strand side-chain-side-chain interactions, except for some aromatic-aromatic interactions, in particular the Trp-Trp one, and the cation-pi interaction between Trp and the non-natural methylated Arg/Lys. As disulfide bonds are frequently used to stabilize peptide conformations, our conclusions can be useful for peptide, peptidomimetic, and protein design, and may even extend to other chemical cross-links.

摘要

引入二硫键来稳定蛋白质和肽的结构并不总是一种成功的策略。为了增进目前关于二硫键对β-发夹稳定性贡献的认识,以先前报道的一种形成β-发夹的肽为模板设计了一系列含半胱氨酸的肽。基于核磁共振参数:核Overhauser效应(NOEs)以及氢和碳的化学位移,研究了这些肽在其氧化态(二硫键环化肽)和还原态(线性肽)下的构象行为。我们发现二硫键对β-发夹稳定性的影响取决于其在β-发夹结构中的位置,当连接两个形成氢键的面对面残基时,这种影响非常小甚至会导致不稳定。当二硫键连接非氢键结合的面对面残基时,我们估计其对β-发夹折叠自由能变化的贡献约为-1.0千卡/摩尔。除了一些芳香-芳香相互作用,特别是色氨酸-色氨酸相互作用以及色氨酸与非天然甲基化精氨酸/赖氨酸之间的阳离子-π相互作用外,该值大于大多数报道的稳定β-发夹的跨链侧链-侧链相互作用的值。由于二硫键经常用于稳定肽的构象,我们的结论对于肽、拟肽和蛋白质设计可能有用,甚至可能扩展到其他化学交联。

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