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极低磁场下蛋白质质子的集体弛豫:蛋白质动力学与聚集的新窗口。

Collective relaxation of protein protons at very low magnetic field: a new window on protein dynamics and aggregation.

作者信息

Luchinat Claudio, Parigi Giacomo

机构信息

Magnetic Resonance Center and Department of Agricultural Biotechnology, University of Florence, Via Maragliano 75/77, 50144 Florence, Italy.

出版信息

J Am Chem Soc. 2007 Feb 7;129(5):1055-64. doi: 10.1021/ja0633417.

Abstract

Since the recent availability of high sensitivity field-cycling relaxometers, it has become possible to measure the protein proton relaxation in millimolar protein solutions as a function of magnetic field. In principle, this provides direct access to the so-called spectral density function of protein protons and, hence, to a full set of dynamic parameters. Understanding the dynamic behavior of biological molecules is increasingly appreciated as crucial to understanding their function. However, theoretical tools to analyze the collective relaxation behavior of protons in solute macromolecules over a wide range of magnetic fields are lacking. A complete relaxation matrix analysis of such behavior is described here. This analysis provides excellent predictions of the experimental proton magnetization decays/recoveries-measured to an unprecedented level of accuracy by a last-generation fast field-cycling relaxometer-of two different globular proteins, hen egg white lysozyme and human serum albumin. The new experimentally validated theoretical model is then used to extract dynamic information on these systems. A "collective" order parameter SC2, different from, but complementary to, that commonly extracted from heteronuclear relaxation measurements at high field, is defined and measured. An accurate estimate of the rotational correlation time is obtained: in the case of lysozyme it agrees very well with theoretical predictions; in the case of serum albumin it provides evidence for aggregation at millimolar concentration.

摘要

自从最近高灵敏度场循环弛豫仪问世以来,在毫摩尔浓度的蛋白质溶液中测量蛋白质质子弛豫随磁场的变化已成为可能。原则上,这可直接获取蛋白质质子的所谓光谱密度函数,从而得到一整套动态参数。人们越来越认识到,了解生物分子的动态行为对于理解其功能至关重要。然而,目前缺乏在广泛磁场范围内分析溶质大分子中质子集体弛豫行为的理论工具。本文描述了对这种行为的完整弛豫矩阵分析。该分析对两种不同的球状蛋白——鸡蛋清溶菌酶和人血清白蛋白的实验质子磁化衰减/恢复情况做出了出色预测,这些实验是由新一代快速场循环弛豫仪以前所未有的精度进行测量的。然后,利用这个新的经过实验验证的理论模型来提取这些系统的动态信息。定义并测量了一个“集体”序参数SC2,它与通常在高场下从异核弛豫测量中提取的序参数不同,但互为补充。获得了旋转相关时间的准确估计值:对于溶菌酶,它与理论预测非常吻合;对于血清白蛋白,它提供了毫摩尔浓度下聚集现象的证据。

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