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一种使用绝热旋转研究大分子动力学的非共振旋转框架弛豫实验。

An Off-resonance Rotating Frame Relaxation Experiment for the Investigation of Macromolecular Dynamics Using Adiabatic Rotations.

作者信息

Mulder FAA, Kaptein R, Boelens R

机构信息

Bijvoet Center for Biomolecular Research, Utrecht University, Padualaan 8, Utrecht, 3584 CH, The Netherlands

出版信息

J Magn Reson. 1998 Apr;131(2):351-7. doi: 10.1006/jmre.1998.1380.

Abstract

15N off-resonance rotating frame relaxation can be applied to the study of internal dynamics in proteins in the millisecond to microsecond regime. We show that the performance of existing methods can be improved by application of simultaneous amplitude and phase-modulated adiabatic RF pulses to align the nuclear spin magnetization with the off-resonance spin-lock field for all the spins under investigation. Application of this technique to the 269-residue serine protease PB92 allowed the measurement of 15N off-resonance rotating frame relaxation rates for all nonoverlapping residues in the protein, including the arginine side chains, encompassing a chemical shift range of 50 ppm. Simulations indicate that by use of the proposed adiabatic RF pulses rotating frame relaxation rates can be obtained for magnetization vectors aligned at arbitrary angles with the static field. Copyright 1998 Academic Press.

摘要

15N 非共振旋转框架弛豫可应用于研究蛋白质在毫秒至微秒时间尺度内的内部动力学。我们表明,通过应用同时进行幅度和相位调制的绝热射频脉冲,使所研究的所有自旋的核自旋磁化与非共振自旋锁定场对齐,可提高现有方法的性能。将该技术应用于269个残基的丝氨酸蛋白酶PB92,能够测量该蛋白质中所有不重叠残基(包括精氨酸侧链)的15N非共振旋转框架弛豫速率,其化学位移范围达50 ppm。模拟结果表明,通过使用所提出的绝热射频脉冲,对于与静磁场成任意角度排列的磁化矢量均可获得旋转框架弛豫速率。版权所有1998年学术出版社。

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