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当代蛋白质静电作用的 NMR 研究。

Contemporary NMR Studies of Protein Electrostatics.

机构信息

Institute of Chemistry, Gorlaeus Laboratories, Leiden University, 2300 RA Leiden, The Netherlands.

出版信息

Annu Rev Biophys. 2015;44:53-75. doi: 10.1146/annurev-biophys-083012-130351. Epub 2015 Feb 26.

Abstract

Electrostatics play an important role in many aspects of protein chemistry. However, the accurate determination of side chain proton affinity in proteins by experiment and theory remains challenging. In recent years the field of nuclear magnetic resonance spectroscopy has advanced the way that protonation states are measured, allowing researchers to examine electrostatic interactions at an unprecedented level of detail and accuracy. Experiments are now in place that follow pH-dependent (13)C and (15)N chemical shifts as spatially close as possible to the sites of protonation, allowing all titratable amino acid side chains to be probed sequence specifically. The strong and telling response of carefully selected reporter nuclei allows individual titration events to be monitored. At the same time, improved frameworks allow researchers to model multiple coupled protonation equilibria and to identify the underlying pH-dependent contributions to the chemical shifts.

摘要

静电作用在蛋白质化学的许多方面都起着重要作用。然而,通过实验和理论准确地确定蛋白质中侧链质子亲和力仍然具有挑战性。近年来,核磁共振波谱学领域的发展改变了质子化状态的测量方式,使得研究人员能够以前所未有的细节和精度研究静电相互作用。现在已经有实验可以跟踪与质子化位置尽可能接近的 pH 依赖性 (13)C 和 (15)N 化学位移,从而可以对所有可滴定的氨基酸侧链进行序列特异性探测。精心选择的报告核的强烈而明确的响应允许监测单个滴定事件。同时,改进的框架允许研究人员模拟多个耦合质子化平衡,并确定化学位移中潜在的 pH 依赖性贡献。

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