Ultrafast 2D-IR spectroscopy of haemoproteins

IF 2.5 2区 化学 Q3 CHEMISTRY, PHYSICAL
N. Simpson, N. T. Hunt
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引用次数: 13

Abstract

Applications of ultrafast two-dimensional infrared (2D-IR) spectroscopy to study the structural dynamics of haem-containing proteins are reviewed. The 2D-IR experiments discussed exploit diatomic ligands bound to the haem as reporters on the dynamic protein environment in the electronic ground-state. This is possible because fluctuations of the protein give rise to inhomogeneous broadening of the ligand stretching vibrational mode that is manifest as spectral diffusion in a time-resolved 2D-IR measurement. Methods for measuring and quantifying spectral diffusion data are introduced, prior to a discussion of recent results focussing on the influence of protein structure, water ingress into the haem pocket and substrate binding on the measured dynamics. Particular emphasis will be placed on proteins featuring the ferric oxidation state of the haem ligated by a nitric oxide molecule, though comparisons with other haem systems will be drawn throughout.
血液蛋白的超快速2D-IR光谱
综述了超快二维红外(2D-IR)光谱在含血蛋白结构动力学研究中的应用。讨论的2D-IR实验利用与血红素结合的双原子配体作为电子基态下动态蛋白质环境的报告者。这是可能的,因为蛋白质的波动引起配体拉伸振动模式的不均匀展宽,这在时间分辨的2D-IR测量中表现为光谱扩散。介绍了测量和量化光谱扩散数据的方法,然后讨论了最近的结果,重点是蛋白质结构、水进入血红素口袋和底物结合对测量动力学的影响。虽然与其他血红素系统的比较将贯穿始终,但特别强调将放在血红素由一氧化氮分子连接的铁氧化状态的蛋白质上。
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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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