Robinson A C, Dean D R, Burgess B K
Department of Molecular Biology and Biochemistry, University of California, Irvine 92717.
J Biol Chem. 1987 Oct 15;262(29):14327-32.
Nitrogenase is composed of two separately purified proteins called the Fe protein and the MoFe protein. In Azotobacter vinelandii the genes encoding these structural components are clustered and ordered: nifH (Fe protein)-nifD (MoFe protein alpha subunit)-nifK (MoFe protein beta subunit). The MoFe protein contains an ironmolybdenum cofactor (FeMo cofactor) whose biosynthesis involves the participation of at least five gene products, nifQ, nifB, nifN, nifE, and nifV. In this study an A. vinelandii mutant strain, which contains a defined deletion within the nifH (Fe protein) gene, was isolated and studied. This mutant is still able to accumulate significant amounts of MoFe protein subunits. However, extracts of this nifH deletion strain have only very low levels of MoFe protein acetylene reduction activity. Fully active MoFe protein can be reconstituted by simply adding isolated FeMo cofactor to the extracts. Fe protein is not necessary to stabilize or insert this preformed FeMo cofactor into the FeMo cofactor-deficient MoFe protein synthesized by the nifH deletion strain. Extracts of the nifH deletion strain can carry out molybdate and ATP-dependent in vitro FeMo cofactor biosynthesis provided Fe protein is added, demonstrating that they contain the products encoded by the FeMo cofactor biosynthetic genes. These data demonstrate that the Fe protein is physically required for the biosynthesis of FeMo cofactor in A. vinelandii.
固氮酶由两种分别纯化的蛋白质组成,即铁蛋白和钼铁蛋白。在棕色固氮菌中,编码这些结构成分的基因成簇排列且有序:nifH(铁蛋白)-nifD(钼铁蛋白α亚基)-nifK(钼铁蛋白β亚基)。钼铁蛋白含有一个铁钼辅因子(FeMo cofactor),其生物合成涉及至少五种基因产物nifQ、nifB、nifN、nifE和nifV的参与。在本研究中,分离并研究了一株棕色固氮菌突变株,该突变株在nifH(铁蛋白)基因内有一个明确的缺失。该突变体仍能够积累大量的钼铁蛋白亚基。然而,这种nifH缺失菌株的提取物中钼铁蛋白乙炔还原活性水平极低。通过简单地向提取物中添加分离的铁钼辅因子,就可以重新构建出完全有活性的钼铁蛋白。对于将这种预先形成的铁钼辅因子稳定化或插入到由nifH缺失菌株合成的缺乏铁钼辅因子的钼铁蛋白中,铁蛋白并非必需。如果添加铁蛋白,nifH缺失菌株的提取物能够进行钼酸盐和ATP依赖的体外铁钼辅因子生物合成,这表明它们含有由铁钼辅因子生物合成基因编码的产物。这些数据表明,在棕色固氮菌中,铁蛋白对于铁钼辅因子的生物合成在物理上是必需的。