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研究来源于乳酸乳球菌的核糖核苷酸三磷酸还原酶反应中的中间体:HF EPR-RFQ 技术的应用。

Investigating the intermediates in the reaction of ribonucleoside triphosphate reductase from Lactobacillus leichmannii: An application of HF EPR-RFQ technology.

机构信息

Department of Physiology and Biophysics, Albert Einstein College of Medicine, 1300 Morris Park Ave., Bronx, NY 10461, United States.

出版信息

J Magn Reson. 2011 Dec;213(1):32-45. doi: 10.1016/j.jmr.2011.08.030. Epub 2011 Aug 31.

Abstract

In this investigation high-frequency electron paramagnetic resonance spectroscopy (HFEPR) in conjunction with innovative rapid freeze-quench (RFQ) technology is employed to study the exchange-coupled thiyl radical-cob(II)alamin system in ribonucleotide reductase from a prokaryote Lactobacillus leichmannii. The size of the exchange coupling (Jex) and the values of the thiyl radical g tensor are refined, while confirming the previously determined (Gerfen et al. (1996) [20]) distance between the paramagnets. Conclusions relevant to ribonucleotide reductase catalysis and the architecture of the active site are presented. A key part of this work has been the development of a unique RFQ apparatus for the preparation of millisecond quench time RFQ samples which can be packed into small (0.5 mm ID) sample tubes used for CW and pulsed HFEPR--lack of this ability has heretofore precluded such studies. The technology is compatible with a broad range of spectroscopic techniques and can be readily adopted by other laboratories.

摘要

在这项研究中,高频电子顺磁共振波谱学(HFEPR)与创新的快速冷冻淬火(RFQ)技术相结合,用于研究来自原核生物乳酸乳球菌的核苷酸还原酶中硫自由基-钴(II)钴胺素的偶联体系。我们改进了交换耦合(Jex)的大小和硫自由基 g 张量的值,同时确认了之前确定的(Gerfen 等人,1996 年)[20]参比物之间的距离。本文提出了与核苷酸还原酶催化和活性位点结构相关的结论。这项工作的一个关键部分是开发了一种独特的 RFQ 设备,用于制备毫秒级淬火时间的 RFQ 样品,这些样品可以装入用于 CW 和脉冲 HFEPR 的小(0.5 毫米内径)样品管中——缺乏这种能力迄今为止一直阻止了此类研究。该技术与广泛的光谱技术兼容,并且可以很容易地被其他实验室采用。

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