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电子顺磁共振光谱作为生物系统中金属中心的一种探测手段。

EPR spectroscopy as a probe of metal centres in biological systems.

作者信息

Hagen Wilfred R

机构信息

Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628, BC Delft, The Netherlands.

出版信息

Dalton Trans. 2006 Oct 7(37):4415-34. doi: 10.1039/b608163k. Epub 2006 Aug 11.

Abstract

Molecular paramagnetism pervades the bioinorganic chemistry of V, Mn, Fe, Co, Ni, Cu, Mo, W, and of a number of non-biological transition elements. To date we can look back at half a century of fruitful EPR studies on metalloproteins, and against this background evaluate the significance of modern EPR spectroscopy from the perspective of a biochemist, making a distinction between conventional continuous wave X-band spectroscopy as a reliable work horse with broad, established applicability even on crude preparations, vs. a diffuse set of "advanced EPR" technologies whose practical application typically calls for narrowly focused research hypotheses and very high quality samples. The type of knowledge on metalloproteins that is readily obtainable with EPR spectroscopy, is explained with illustrative examples, as is the relation between experimental complexity and the spin value of the system.

摘要

分子顺磁性贯穿于钒、锰、铁、钴、镍、铜、钼、钨以及许多非生物过渡元素的生物无机化学领域。迄今为止,我们可以回顾半个世纪以来对金属蛋白卓有成效的电子顺磁共振(EPR)研究,在此背景下,从生物化学家的角度评估现代EPR光谱学的意义,区分传统连续波X波段光谱学作为一种可靠的主力军,即使在粗制制剂上也具有广泛、既定的适用性,与一系列分散的“先进EPR”技术,其实际应用通常需要狭义聚焦的研究假设和非常高质量的样品。文中用示例解释了通过EPR光谱学很容易获得的关于金属蛋白的知识类型,以及实验复杂性与系统自旋值之间的关系。

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