Grossman J G, Hasnain S S, Yousafzai F K, Smith B E, Eady R R
Molecular Biophysics Group, CLRC Daresbury Laboratory, Warrington, Cheshire, UK.
J Mol Biol. 1997 Mar 7;266(4):642-8. doi: 10.1006/jmbi.1996.0846.
An essential feature of the mechanism of nitrogenase, the enzyme responsible for biological nitrogen fixation, is the formation of a transient electron transfer complex between the MoFe protein containing the active site at which N2 is reduced, and the Fe protein, which functions as a specific electron donor to the MoFe protein. We have obtained high quality solution X-ray scattering data using synchrotron X-rays of a stable putative electron transfer complex, (MoFe-protein)(Fe-protein.ADP.AIF4)2, of Klebsiella pneumoniae and used the model-independent approach based on the multipole expansion method to provide a stable and unique shape restoration at approximately 15 A resolution. The biological significance of this first molecular structure of a nitrogenase complex is discussed.
固氮酶是负责生物固氮的酶,其作用机制的一个基本特征是,在含有N₂还原活性位点的钼铁蛋白与作为钼铁蛋白特定电子供体的铁蛋白之间,形成一个瞬态电子转移复合物。我们利用肺炎克雷伯菌的稳定假定电子转移复合物(MoFe蛋白)(Fe蛋白·ADP·AlF₄)₂的同步加速器X射线,获得了高质量的溶液X射线散射数据,并使用基于多极展开法的与模型无关的方法,在约15 Å分辨率下提供了一个稳定且独特的形状恢复。本文讨论了这种固氮酶复合物首个分子结构的生物学意义。