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利用核磁共振弛豫数据模拟抗原肽的动力学

Modelling the dynamics of an antigenic peptide using NMR relaxation data.

作者信息

Kieffer B, Koehl P, Lefèvre J F

机构信息

IBMC du CNRS, Strasbourg, France.

出版信息

Biochimie. 1992 Sep-Oct;74(9-10):815-24. doi: 10.1016/0300-9084(92)90064-l.

Abstract

The internal dynamics of a cyclic peptide which was designed to mimic an antigenic loop of the haemagglutinin, is studied through heteronuclear relaxation along the 13C alpha-1H alpha vectors and through homonuclear relaxation along the 1H alpha-1HN and 1H beta-1H beta' vectors. Order parameters are extracted from the longitudinal and cross-relaxation data. Molecular dynamics simulations are performed and the order parameters are calculated in different ways from the trajectories. The simulation, which is performed in vacuo, gives smaller order parameters (vector motions of larger amplitude) than the experimental results. However, the general features of the experimental order parameters are reproduced by the molecular dynamics simulation. The flexibility of the molecule can then be investigated from the results of the molecular dynamics. It shows that the mobility observed through the order parameters is due to motions in flanking regions, remote from the observed vectors.

摘要

通过沿着13Cα-1Hα向量的异核弛豫以及沿着1Hα-1HN和1Hβ-1Hβ'向量的同核弛豫,研究了一种旨在模拟血凝素抗原环的环肽的内部动力学。从纵向和交叉弛豫数据中提取序参数。进行了分子动力学模拟,并从轨迹以不同方式计算序参数。在真空条件下进行的模拟给出的序参数比实验结果小(向量运动幅度更大)。然而,分子动力学模拟再现了实验序参数的一般特征。然后可以从分子动力学结果研究分子的灵活性。结果表明,通过序参数观察到的流动性是由于远离观察向量的侧翼区域的运动所致。

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