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蜂毒明肽中天冬酰胺稳定的β-转角:动力学模拟和酰胺氢交换分析对结构稳定性的贡献

The asparagine-stabilized beta-turn of apamin: contribution to structural stability from dynamics simulation and amide hydrogen exchange analysis.

作者信息

Dempsey C E, Sessions R B, Lamble N V, Campbell S J

机构信息

Biochemistry Department and Centre for Molecular Recognition, School of Medical Sciences, University of Bristol, Bristol BS8 1TD, United Kingdom.

出版信息

Biochemistry. 2000 Dec 26;39(51):15944-52. doi: 10.1021/bi002044q.

Abstract

Molecular dynamics simulations of bee venom apamin, and an analogue having an Asn to Ala substitution at residue 2 (apamin-N2A), were analyzed to explore the contribution of hydrogen bonds involving Asn2 to local (beta-turn residues N2, C3, K4, A5) and global stability. The wild-type peptide retained a stable conformation during 2.4 ns of simulation at 67 degrees C, with high beta-turn stability characterized by backbone-side chain hydrogen bonds involving beta-turn residues K4 and A5, with the N2 side chain amide carbonyl. The loss of stabilizing interactions involving the N2 side chain resulted in the loss of the beta-turn conformation in the apamin N2A simulations (27 or 67 degrees C). This loss of beta-turn stability propagates throughout the peptide structure, with destabilization of the C-terminal helix connected to the N-terminal region by two disulfide bonds. Backbone stability in a synthetic peptide analogue (apamin-N2A) was characterized by NMR and amide hydrogen exchange measurements. Consistent with the simulations, loss of hydrogen bonds involving the N2 side chain resulted in destabilization of both the N-terminal beta-turn and the C-terminal helix. Amide exchange protection factors in the C-terminal helix were reduced by 9-11-fold in apamin N2A as compared with apamin, corresponding to free energy (deltaDeltaG(uf)) of around 1.5 kcal M(-1) at 20 degrees C. This is equivalent to the contribution of hydrogen bond interactions involving the N2 side chain to the stability of the beta-turn. Together with additional measures of exchange protection factors, the three main contributions to backbone stability in apamin that account for virtually the full thermodynamic stability of the peptide have been quantitated.

摘要

对蜂毒蜂毒明肽以及在第2位残基处具有天冬酰胺到丙氨酸取代的类似物(蜂毒明肽 - N2A)进行了分子动力学模拟,以探究涉及天冬酰胺2的氢键对局部(β - 转角残基N2、C3、K4、A5)和整体稳定性的贡献。野生型肽在67℃下进行2.4纳秒的模拟过程中保持稳定构象,具有高β - 转角稳定性,其特征是涉及β - 转角残基K4和A5以及N2侧链酰胺羰基的主链 - 侧链氢键。在蜂毒明肽N2A模拟(27℃或67℃)中,涉及N2侧链的稳定相互作用的丧失导致β - 转角构象的丧失。β - 转角稳定性的这种丧失在整个肽结构中传播,通过两个二硫键连接到N端区域的C端螺旋不稳定。通过核磁共振和酰胺氢交换测量对合成肽类似物(蜂毒明肽 - N2A)中的主链稳定性进行了表征。与模拟结果一致,涉及N2侧链的氢键的丧失导致N端β - 转角和C端螺旋均不稳定。与蜂毒明肽相比,蜂毒明肽N2A中C端螺旋的酰胺交换保护因子降低了9 - 11倍,对应于20℃下约1.5千卡摩尔⁻¹的自由能(ΔΔG(uf))。这相当于涉及N2侧链的氢键相互作用对β - 转角稳定性的贡献。连同交换保护因子的其他测量值,已经对蜂毒明肽中主链稳定性的三个主要贡献进行了定量,这些贡献几乎占了该肽的全部热力学稳定性。

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