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内部运动对由二维核磁共振实验推导的分子构象影响的蒙特卡罗模拟研究。

A Monte Carlo simulation study of the influence of internal motions on the molecular conformation deduced from two-dimensional NMR experiments.

作者信息

Genest D

出版信息

Biopolymers. 1989 Nov;28(11):1903-11. doi: 10.1002/bip.360281107.

Abstract

Monte Carlo methods have been used to simulate internal motions of aromatic protons of an oligonucleotide at the nanosecond time scale. Each proton is allowed to fluctuate about its equilibrium position. The longitudinal cross-relaxation rates of such a system of spins have been determined by computing the appropriate correlation functions. Then the interproton distances have been deduced according to the procedure generally used in two-dimensional nmr techniques (nuclear Overhauser effect spectroscopy--NOESY) and compared to the true values. The influence of the amplitude A and of the internal rotational diffusion constant Dint characterizing the dynamics of the system has been checked for in-phase and for uncorrelated motions. It is shown that for the investigated models the distances deduced from NOESY experiments may be under- or overestimated, depending strongly on the values of A and Dint. Furthermore, the cross-relaxation rate of a couple of protons is very sensitive to the correlation level of the motions of both protons.

摘要

蒙特卡罗方法已被用于在纳秒时间尺度上模拟寡核苷酸中芳香族质子的内部运动。每个质子都可以围绕其平衡位置波动。通过计算适当的相关函数,确定了这样一个自旋系统的纵向交叉弛豫率。然后,根据二维核磁共振技术(核欧弗豪泽效应光谱法——NOESY)中通常使用的程序推导质子间距离,并与真实值进行比较。对于同相运动和不相关运动,已经检验了表征系统动力学的振幅A和内部旋转扩散常数Dint的影响。结果表明,对于所研究的模型,根据NOESY实验推导的距离可能被低估或高估,这在很大程度上取决于A和Dint的值。此外,一对质子的交叉弛豫率对两个质子运动的相关程度非常敏感。

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