用于生物分子结构鉴定的冷离子光谱

IF 2.5 2区 化学 Q3 CHEMISTRY, PHYSICAL International Reviews in Physical Chemistry Pub Date : 2018-10-02 DOI:10.1080/0144235X.2018.1547453
O. Boyarkin
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引用次数: 17

摘要

在过去的十年中,低温冷离子在气相分离的光谱已经发展成为一种新的工具来解释生物分子的结构。冷却允许振动分辨率的紫外和红外光谱的小到中等大小的肽,使不同的多激光技术的构象特异性光谱。结合量子化学计算,单个构象的红外光谱允许求解其固有的几何形状。在这里,我们简要回顾了冷离子光谱(CIS)方法的一些基本和技术方面,并说明了它在质子化肽、碳水化合物和生物分子非共价复合物中的应用。鉴于独联体与生命科学研究的相关性,对其挑战和局限性进行了批判性评估。最后,我们讨论并说明了CIS用于生物分子分析鉴定的一些方法,特别是最近发展起来的将CIS与高分辨率质谱相结合的二维UV-MS指纹识别方法。
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Cold ion spectroscopy for structural identifications of biomolecules
ABSTRACT Over the last decade, the spectroscopy of cryogenically cold ions isolated in the gas phase has been developed as a new tool for structural elucidations of biological molecules. Cooling allows for vibrational resolution in UV and IR spectra of small to midsize peptides, enabling different multi-laser techniques of conformer-specific spectroscopy. In conjunction with quantum chemistry calculations, IR spectra of single conformers allows for solving their intrinsic geometries. Here, we briefly review some fundamental and technical aspects of the cold-ion spectroscopy (CIS) approach and illustrate its application for protonated peptides, carbohydrates and for non-covalent complexes of biomolecules. The challenges and limitations of CIS in view of its relevance to life-science studies are critically assessed. Finally, we discuss and illustrate some approaches of CIS for the analytical identification of biomolecules, in particular the recently developed method of 2D UV-MS fingerprinting, which combines CIS with high-resolution mass spectrometry.
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来源期刊
CiteScore
14.20
自引率
1.60%
发文量
5
审稿时长
1 months
期刊介绍: International Reviews in Physical Chemistry publishes review articles describing frontier research areas in physical chemistry. Internationally renowned scientists describe their own research in the wider context of the field. The articles are of interest not only to specialists but also to those wishing to read general and authoritative accounts of recent developments in physical chemistry, chemical physics and theoretical chemistry. The journal appeals to research workers, lecturers and research students alike.
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