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氮杂氨基酸残基在设计肽的β-转角形成及稳定性中的作用

Role of azaamino acid residue in beta-turn formation and stability in designed peptide.

作者信息

Lee H J, Ahn I A, Ro S, Choi K H, Choi Y S, Lee K B

机构信息

Advanced Analysis Center, Korea Institute of Science and Technology, Seoul.

出版信息

J Pept Res. 2000 Jul;56(1):35-46. doi: 10.1034/j.1399-3011.2000.00717.x.

Abstract

The structural perturbation induced by C(alpha)-->N(alpha) exchange in azaamino acid-containing peptides was predicted by ab initio calculation of the 6-31G* and 3-21G* levels. The global energy-minimum conformations for model compounds, For-azaXaa-NH2 (Xaa=Gly, Ala, Leu) appeared to be the beta-turn motif with a dihedral angle of phi= +/- 90 degrees, psi=0 degrees. This suggests that incorporation of the azaXaa residue into the i+2 position of designed peptides could stabilize the beta-turn structure. The model azaLeu-containing peptide, Boc-Phe-azaLeu-Ala-OMe, which is predicted to adopt a beta-turn conformation was designed and synthesized in order to experimentally elucidate the role of the azaamino acid residue. Its structural preference in organic solvents was investigated using 1H NMR, molecular modelling and IR spectroscopy. The temperature coefficients of amide protons, the characteristic NOE patterns, the restrained molecular dynamics simulation and IR spectroscopy defined the dihedral angles [ (phi i+1, psi i+1) (phi i+2, psi i+2)] of the Phe-azaLeu fragment in the model peptide, Boc-Phe-azaLeu-Ala-OMe, as [(-59 degrees, 127 degrees) (107 degrees, -4 degrees)]. This solution conformation supports a betaII-turn structural preference in azaLeu-containing peptides as predicted by the quantum chemical calculation. Therefore, intercalation of the azaamino acid residue into the i+2 position in synthetic peptides is expected to provide a stable beta-turn formation, and this could be utilized in the design of new peptidomimetics adopting a beta-turn scaffold.

摘要

通过在6-31G和3-21G水平上的从头计算,预测了含氮杂氨基酸肽中由C(α)→N(α)交换引起的结构扰动。模型化合物For-azaXaa-NH2(Xaa = Gly、Ala、Leu)的全局能量最低构象似乎是二面角为φ = +/- 90°、ψ = 0°的β-转角基序。这表明将azaXaa残基掺入设计肽的i + 2位置可以稳定β-转角结构。为了通过实验阐明氮杂氨基酸残基的作用,设计并合成了预计采用β-转角构象的含氮杂亮氨酸的模型肽Boc-Phe-azaLeu-Ala-OMe。使用1H NMR、分子建模和红外光谱研究了其在有机溶剂中的结构偏好。酰胺质子的温度系数、特征性的NOE模式、受限分子动力学模拟和红外光谱确定了模型肽Boc-Phe-azaLeu-Ala-OMe中Phe-azaLeu片段的二面角[ (φ i + 1, ψ i + 1) (φ i + 2, ψ i + 2)]为[(-59°, 127°) (107°, -4°)]。这种溶液构象支持了量子化学计算预测的含氮杂亮氨酸肽中βII-转角结构偏好。因此,预计在合成肽的i + 2位置插入氮杂氨基酸残基可提供稳定的β-转角形成,这可用于设计采用β-转角支架的新型拟肽。

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