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β-肽的圆二色光谱:对分子结构的敏感性及动态平均效应

Circular dichroism spectra of beta-peptides: sensitivity to molecular structure and effects of motional averaging.

作者信息

Daura Xavier, Bakowies Dirk, Seebach Dieter, Fleischhauer Jörg, van Gunsteren Wilfred F, Krüger Peter

机构信息

Laboratory of Physical Chemistry, Swiss Federal Institute of Technology Zurich, ETH-Hönggerberg, 8093 Zurich, Switzerland.

出版信息

Eur Biophys J. 2003 Dec;32(8):661-70. doi: 10.1007/s00249-003-0303-1. Epub 2003 Sep 16.

Abstract

Circular dichroism spectra of two beta-peptides, i.e. peptides composed of beta-amino acids, calculated using ensembles of configurations obtained by molecular dynamics simulation are presented. The calculations were based on 200 ns simulations of a beta-heptapeptide in methanol at 298 K and 340 K and a 50 ns simulation of a beta-hexapeptide in methanol at 340 K. In the simulations the peptides sampled both folded (helical) and unfolded structures. Trajectory structures with common backbone conformations were identified and grouped into clusters. The CD spectra were calculated for individual structures, based on peptide-group dipole transition moments obtained from semi-empirical molecular orbital theory and using the so-called matrix method. The single-structure spectra were then averaged over entire trajectories and over clusters of structures. Although certain features of the experimental CD spectra of the beta-peptides are reproduced by the trajectory-average spectra, there exist clear differences between the two sets of spectra in both wavelength and peak intensities. The analysis of individual contributions to the average spectra shows that, in general, the interpretation of a CD signal in terms of a single structure is not possible. Moreover, there is a large variation in the CD spectra calculated for a set of individual structures that belong to the same cluster, even when a structurally tight clustering criterion is used. This indicates that the CD spectra of these peptides are very sensitive to small local structural differences.

摘要

本文展示了两种β-肽(即由β-氨基酸组成的肽)的圆二色光谱,这些光谱是通过分子动力学模拟获得的构型集合计算得出的。计算基于在298 K和340 K下对甲醇中β-七肽进行的200 ns模拟以及在340 K下对甲醇中β-六肽进行的50 ns模拟。在模拟中,肽段采样了折叠(螺旋)和未折叠结构。识别出具有共同主链构象的轨迹结构并将其分组为簇。基于从半经验分子轨道理论获得的肽基团偶极跃迁矩并使用所谓的矩阵方法,为各个结构计算CD光谱。然后将单结构光谱在整个轨迹和结构簇上进行平均。尽管β-肽的实验CD光谱的某些特征通过轨迹平均光谱得以重现,但两组光谱在波长和峰强度方面都存在明显差异。对平均光谱的各个贡献的分析表明,一般而言,不可能根据单一结构来解释CD信号。此外,即使使用结构紧密的聚类标准,为属于同一簇的一组单个结构计算的CD光谱也存在很大差异。这表明这些肽的CD光谱对小的局部结构差异非常敏感。

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