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从固氮酶中分离出铁钼辅因子。

Isolation of an iron-molybdenum cofactor from nitrogenase.

作者信息

Shah V K, Brill W J

出版信息

Proc Natl Acad Sci U S A. 1977 Aug;74(8):3249-53. doi: 10.1073/pnas.74.8.3249.

Abstract

A method for the isolation of an iron-molybdenum cofactor (FeMoCo) from component I of nitrogenase is described. This method is used to isolate FeMoCo from aerobic, anaerobic, facultative, and photosynthetic nitrogen-fixing organisms. The Fe/Mo ratio in the FeMoCo from Azotobacter vinelandii and Clostridium pasteurianum is 8:1. The FeMoCo contains six atoms of acid-labile sulfide per eight Fe atoms. Crystalline component I from A. vinelandii contains 2 Mo, 33 Fe, and 27 acid-labile sulfide atoms per molecular weight of 250,000. The specific activity of FeMoCo is 425 nmol of C(2)H(4) formed/min per nmol of Mo. There is better than 98% reconstitution between FeMoCo and inactive component I in A. vinelandii mutant strain UW45. The FeMoCo yield from component I is about 90%. FeMoCo from nitrogenase component I of C. pasteurianum, Klebsiella pneumoniae, Bacillus polymyxa, and Rhodospirillum rubrum activates inactive component I in an extract from mutant strain UW45 and follows saturation kinetics. The FeMoCo in various nitrogen-fixing organisms seems to be very similar. Wild-type A. vinelandii derepressed for nitrogenase synthesis in tungsten-containing medium and K. pneumoniae mutant strain UN109 are also activated in vitro by FeMoCo. The FeMoCo is very sensitive to oxygen, but is stable even at room temperature as long as it is kept anaerobic and in N-methylformamide, the solvent used for its isolation. FeMoCo is unstable in an aqueous environment, even though it is kept strictly anaerobic. Knowledge of the structure of this cofactor should be useful for understanding the role of molybdenum at the active site of nitrogenase, role of ligands close to molybdenum in electron and proton transfer, and the catalytic mechanism of nitrogen fixation. The FeMoCo might be used as a model for synthesizing catalysts for chemical nitrogen fixation.

摘要

本文描述了一种从固氮酶组分I中分离铁钼辅因子(FeMoCo)的方法。该方法用于从需氧、厌氧、兼性和光合固氮生物中分离FeMoCo。来自维涅兰德固氮菌和巴氏梭菌的FeMoCo中的铁/钼比例为8:1。FeMoCo每八个铁原子含有六个酸不稳定硫化物原子。维涅兰德固氮菌的结晶组分I每250,000分子量含有2个钼、33个铁和27个酸不稳定硫化物原子。FeMoCo的比活性为每纳摩尔钼每分钟形成425纳摩尔C₂H₄。在维涅兰德固氮菌突变株UW45中,FeMoCo与无活性的组分I之间的重组率高于98%。从组分I中获得的FeMoCo产量约为90%。来自巴氏梭菌、肺炎克雷伯菌、多粘芽孢杆菌和红螺菌的固氮酶组分I中的FeMoCo可激活突变株UW45提取物中的无活性组分I,并遵循饱和动力学。各种固氮生物中的FeMoCo似乎非常相似。在含钨培养基中对固氮酶合成去阻遏的野生型维涅兰德固氮菌和肺炎克雷伯菌突变株UN109在体外也可被FeMoCo激活。FeMoCo对氧气非常敏感,但只要保持厌氧状态并存在于用于分离它的溶剂N-甲基甲酰胺中,即使在室温下也很稳定。FeMoCo在水性环境中不稳定,即使严格保持厌氧状态。了解这种辅因子的结构对于理解钼在固氮酶活性位点的作用、靠近钼的配体在电子和质子转移中的作用以及固氮的催化机制应该是有用的。FeMoCo可作为合成化学固氮催化剂的模型。

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