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来自棕色固氮菌固氮酶的铁钼辅因子的纯化、组成、电荷及分子量

Purification, composition, charge, and molecular weight of the FeMo cofactor from Azotobacter vinelandii nitrogenase.

作者信息

Huang H Q, Kofford M, Simpson F B, Watt G D

机构信息

Department of Biology, Xiamen University, PRC.

出版信息

J Inorg Biochem. 1993 Oct 1;52(1):59-75. doi: 10.1016/0162-0134(93)85623-g.

Abstract

A procedure has been developed for purifying NMF and NMF/DMF solutions of the FeMo cofactor (FeMoco) derived from the molybdenum iron protein of nitrogenase. This procedure consists of anaerobic chromatography of FeMoco solutions on two consecutive anaerobic molecular sizing columns followed by electrophoretic migration through a third sizing column. FeMoco prepared by this procedure is homogeneous as evidenced by chromatographic, electrophoretic, and compositional criteria. The minimal elemental composition was found to be MoFe6S6 using chemical colorimetric, inductively coupled plasma (ICP), and proton induced x-ray emission (PIXE) analytical procedures. Molecular weight measurements of NMF and DMF solutions of FeMoco using calibrated columns containing various molecular sizing matrices gave values of 1395 +/- 130 daltons for the molecular weight of FeMoco. The measured MW of FeMoco is about twice the value expected from the minimal stoichiometry, suggesting that FeMoco may exist as Mo2Fe12S12 in NMF and DMF solutions. The charge of FeMoco in its EPR silent state was determined to be 2- per Mo by passing NMF solutions of FeMoco containing excess salts of Na+, K+, Rb+, and Mg2+ through long columns equilibrated with pure NMF and then measuring the M/Mo ratio of the emerging FeMoco. Decomposition of purified FeMoco by acid or O2-exposure followed by exhaustive methylation or silanation of the resulting mixture failed to yield any methylated or silanated homocitric acid as measured by tandem gas chromatography-mass spectrometry (GC-MS) analysis. The GC-MS procedure applied to standard homocitric acid samples and various controls readily detects methylated homocitric acid at the sub-nanomole level. We conclude that the minimum molecular formula for active oxidized (EPR silent) FeMoco in NMF and in NMF-DMF mixtures is [Mo2Fe12S12]4-, but that other small organic anions such as NMF- may be present.

摘要

已开发出一种用于纯化源自固氮酶钼铁蛋白的铁钼辅因子(FeMoco)的NMF和NMF/DMF溶液的方法。该方法包括将FeMoco溶液在两个连续的厌氧分子尺寸排阻柱上进行厌氧色谱分析,然后通过第三个尺寸排阻柱进行电泳迁移。通过该方法制备的FeMoco在色谱、电泳和组成标准方面均表现出均一性。使用化学比色法、电感耦合等离子体(ICP)和质子诱导X射线发射(PIXE)分析程序,发现其最小元素组成为MoFe6S6。使用含有各种分子尺寸排阻基质的校准柱对FeMoco的NMF和DMF溶液进行分子量测量,得出FeMoco的分子量为1395±130道尔顿。测得的FeMoco分子量约为最小化学计量比预期值的两倍,这表明FeMoco在NMF和DMF溶液中可能以Mo2Fe12S12的形式存在。通过使含有过量Na+、K+、Rb+和Mg2+盐的FeMoco的NMF溶液通过用纯NMF平衡的长柱,然后测量流出的FeMoco的M/Mo比,确定处于EPR沉默状态的FeMoco的电荷为每个Mo 2-。通过串联气相色谱-质谱(GC-MS)分析,经酸分解或暴露于O2后再对所得混合物进行彻底甲基化或硅烷化处理的纯化FeMoco,未能产生任何甲基化或硅烷化的高柠檬酸。应用于标准高柠檬酸样品和各种对照的GC-MS程序能够轻易检测到亚纳摩尔水平的甲基化高柠檬酸。我们得出结论,NMF和NMF-DMF混合物中活性氧化态(EPR沉默)FeMoco的最小分子式为[Mo2Fe12S12]4-,但可能存在其他小的有机阴离子,如NMF-。

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