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首页> 外文期刊>Journal of Molecular Biology >Dissecting the stability of a beta-hairpin peptide that folds in water: NMR and molecular dynamics analysis of the beta-turn and beta-strand contributions to folding.
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Dissecting the stability of a beta-hairpin peptide that folds in water: NMR and molecular dynamics analysis of the beta-turn and beta-strand contributions to folding.

机译:剖析在水中折叠的β-发夹肽的稳定性:NMR和分子动力学分析β-转角和β-链对折叠的贡献。

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NMR studies of the folding and conformational properties of a beta-hairpin peptide, several peptide fragments of the hairpin, and sequence-modified analogues, have enabled the various contributions to beta-hairpin stability in water to be dissected. Temperature and pH-induced unfolding studies indicate that the folding-unfolding equilibrium approximates to a two-state model. The hairpin is highly resistant to denaturation and is still significantly folded in 7 M urea at 298 K. Thermodynamic analysis shows the hairpin to fold in water with a significant change in heat capacity, however, DeltaCp degrees in 7 M urea is reduced. V/Y-->A mutations on one strand of the hairpin reduce folding to <10 %, consistent with a hydrophobic stabilisation model. We show that in a truncated peptide (residues 6-16) lacking the hydrophobic residues on one beta-strand, the type I' Asn-Gly turn in the sequence SINGKK is significantly populated in water in the absence of interstrand hydrophobic contacts. Unrestrained molecular dynamics simulations of unfolding, using an explicit solvation model, show that the conformation of the NG turn persists for longer than the AG analogue, which has a much lower propensity for type I' turn formation from a data base analysis of preferred turns. The origin of the high stability of the Asn-Gly turn is not entirely clear; data base analysis of 66 NG turns, together with molecular dynamics simulations, reveals no participation of the Asn side-chain in turn-stabilising interactions with the peptide backbone. However, hydration analysis of the molecular dynamics simulations reveals a pocket of "high density" water bridging between the Asn side-chain and peptide main-chain that suggests solvent-mediated interactions may play an important role in modulating phi,psi propensities in the NG turn region. Copyright 1999 Academic Press.
机译:核磁共振研究的β-发夹肽,发夹的几个肽片段和序列修饰的类似物的折叠和构象性质,已经能够剖析对水中β-发夹稳定性的各种贡献。温度和pH诱导的展开研究表明,折叠展开平衡近似于两态模型。发夹具有很高的抗变性能力,并且在298 K的7 M尿素中仍能明显折叠。热力学分析显示,发夹在水中折叠时的热容显着变化,但是7 M尿素中的DeltaCp度降低。 V / Y->发夹的一条链上的A突变将折叠降低至<10%,与疏水性稳定模型一致。我们显示,在一个截短的肽段(残基6-16)中,在一个β链上缺少疏水残基,序列中的I'Asn-Gly序列SINGKK大量存在于水中,而没有链间疏水接触。使用显式溶剂化模型对展开进行的不受限制的分子动力学模拟显示,NG转弯的构象比AG类似物持久存在更长的时间,而AG类似物从首选转弯的数据库分析中发现,I型转弯的形成倾向要低得多。 Asn-Gly转弯高稳定性的根源尚不完全清楚; 66个NG转弯的数据库分析以及分子动力学模拟显示,Asn侧链没有参与与肽主链的转弯稳定相互作用。但是,分子动力学模拟的水合分析显示,Asn侧链和肽主链之间有一小段“高密度”水桥接,表明溶剂介导的相互作用可能在调节NG中的phi,psi倾向中起重要作用。转区。版权所有1999,学术出版社。

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