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分子动力学的离子淌度分析

Ion mobility analysis of molecular dynamics.

作者信息

Wyttenbach Thomas, Pierson Nicholas A, Clemmer David E, Bowers Michael T

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106; email:

出版信息

Annu Rev Phys Chem. 2014;65:175-96. doi: 10.1146/annurev-physchem-040513-103644. Epub 2013 Dec 9.

Abstract

The combination of mass spectrometry and ion mobility spectrometry (IMS) employing a temperature-variable drift cell or a drift tube divided into sections to make IMS-IMS experiments possible allows information to be obtained about the molecular dynamics of polyatomic ions in the absence of a solvent. The experiments allow the investigation of structural changes of both activated and native ion populations on a timescale of 1-100 ms. Five different systems representing small and large, polar and nonpolar molecules, as well as noncovalent assemblies, are discussed in detail: a dinucleotide, a sodiated polyethylene glycol chain, the peptide bradykinin, the protein ubiquitin, and two types of peptide oligomers. Barriers to conformational interconversion can be obtained in favorable cases. In other cases, solution-like native structures can be observed, but care must be taken in the experimental protocols. The power of theoretical modeling is demonstrated.

摘要

将质谱法与离子迁移谱法(IMS)相结合,采用温度可变的漂移池或分成多个部分的漂移管,以使IMS-IMS实验成为可能,这样就能够在没有溶剂的情况下获取有关多原子离子分子动力学的信息。这些实验能够在1-100毫秒的时间尺度上研究活化离子群体和天然离子群体的结构变化。详细讨论了代表小分子和大分子、极性和非极性分子以及非共价组装体的五种不同体系:二核苷酸、钠化聚乙二醇链、肽缓激肽、蛋白质泛素以及两种类型的肽寡聚物。在有利的情况下可以获得构象互变的障碍。在其他情况下,可以观察到类似溶液的天然结构,但在实验方案中必须小心谨慎。展示了理论建模的力量。

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