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单核非血红素铁蛋白的电子顺磁共振

EPR of Mononuclear Non-Heme Iron Proteins.

作者信息

Gaffney Betty J

机构信息

Department of Biological Science Florida State University Tallahassee, FL 32306-4370 (850) 644-8547

出版信息

Biol Magn Reson. 2009 Jun 19;28:233-268. doi: 10.1007/978-0-387-84856-3.

Abstract

Flexible geometry of three- to six-protein side-chain ligands to non-heme iron in proteins is the basis for widely diverse reactivites ranging from iron transport to redox chemistry. The gap between fixed states determined by x-ray analysis can be filled by spectroscopic study of trapped intermediates. EPR is a versatile and relatively quick approach to defining intermediate states in terms of the geometry and electronic structures of iron. A number of examples in which the iron chemistry of non-heme proteins is understood through x-ray structures at subbond length resolution, refined calculations, and spectroscopy exist now. Some examples in which EPR has provided unique insight are summarized in Table 1. Assignment and quantitative evaluation of the EPR resonances in ferric, non-heme iron sites is the focus of the first section of this review. An earlier chapter in this series provides more background on the theory specific to EPR of S = 5/2 metal ions [1]. Besides EPR spectra of ferric mononuclear sites, EPR of ferrous iron coupled to a spin 1/2 radical, as it pertains to the categories mononuclear and non-heme, will also be covered, in the second half of this chapter. Examples include the quinone-ferrous interactions in photosynthetic reaction centers and nitric oxide complexes with non-heme ferrous iron. Other recent reviews of the biochemistry and spectroscopy of non-heme iron proteins provide additional background [2-6].

摘要

蛋白质中三至六个蛋白质侧链配体与非血红素铁的灵活几何结构,是从铁运输到氧化还原化学等广泛多样反应活性的基础。通过对捕获中间体的光谱研究,可以填补由X射线分析确定的固定状态之间的差距。电子顺磁共振(EPR)是一种通用且相对快速的方法,可根据铁的几何结构和电子结构来定义中间状态。现在有许多通过亚键长分辨率的X射线结构、精确计算和光谱学来理解非血红素蛋白质铁化学的例子。表1总结了一些EPR提供独特见解的例子。对三价非血红素铁位点的EPR共振进行归属和定量评估是本综述第一部分的重点。本系列的前一章提供了更多关于S = 5/2金属离子EPR特定理论的背景知识[1]。除了三价单核位点的EPR光谱外,本章后半部分还将涵盖与自旋1/2自由基耦合的二价铁的EPR,因为它属于单核和非血红素类别。例子包括光合反应中心中的醌 - 二价铁相互作用以及非血红素二价铁的一氧化氮配合物。非血红素铁蛋白的生物化学和光谱学的其他近期综述提供了更多背景知识[2 - 6]。

相似文献

1
EPR of Mononuclear Non-Heme Iron Proteins.单核非血红素铁蛋白的电子顺磁共振
Biol Magn Reson. 2009 Jun 19;28:233-268. doi: 10.1007/978-0-387-84856-3.

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