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利用磁圆二色性研究双核金属水解酶及相应的仿生化合物。

Use of magnetic circular dichroism to study dinuclear metallohydrolases and the corresponding biomimetics.

作者信息

Larrabee James A, Schenk Gerhard, Mitić Nataša, Riley Mark J

机构信息

Department of Chemistry and Biochemistry, Middlebury College, Middlebury, VT, 05753, USA,

出版信息

Eur Biophys J. 2015 Sep;44(6):393-415. doi: 10.1007/s00249-015-1053-6. Epub 2015 Jul 1.

Abstract

Magnetic circular dichroism (MCD) is a convenient technique for providing structural and mechanistic insight into enzymatic systems in solution. The focus of this review is on aspects of geometric and electronic structure that can be determined by MCD, and how this method can further our understanding of enzymatic mechanisms. Dinuclear Co(II) systems that catalyse hydrolytic reactions were selected to illustrate the approach. These systems all contain active sites with similar structures consisting of two Co(II) ions bridged by one or two carboxylates and a water or hydroxide. In most of these active sites one Co(II) is five-coordinate and one is six-coordinate, with differing binding affinities. It is shown how MCD can be used to determine which binding site--five or six-coordinate--has the greater affinity. Importantly, zero-field-splitting data and magnetic exchange coupling constants may be determined from the temperature and field dependence of MCD data. The relevance of these data to the function of the enzymatic systems is discussed.

摘要

磁圆二色性(MCD)是一种便捷的技术,可用于深入了解溶液中酶系统的结构和作用机制。本综述的重点是可通过MCD确定的几何和电子结构方面,以及该方法如何增进我们对酶作用机制的理解。选择催化水解反应的双核Co(II)系统来说明该方法。这些系统均含有结构相似的活性位点,由一个或两个羧酸盐以及一个水或氢氧根桥连的两个Co(II)离子组成。在这些活性位点中的大多数中,一个Co(II)是五配位的,一个是六配位的,具有不同的结合亲和力。展示了如何使用MCD来确定哪个结合位点(五配位或六配位)具有更高的亲和力。重要的是,零场分裂数据和磁交换耦合常数可根据MCD数据的温度和场依赖性来确定。讨论了这些数据与酶系统功能的相关性。

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