Li J G, Tal S, Robinson A C, Dang V, Burgess B K
Department of Molecular Biology and Biochemistry, University of California, Irvine 92717.
J Bacteriol. 1990 Oct;172(10):5884-91. doi: 10.1128/jb.172.10.5884-5891.1990.
Strains of Azotobacter vinelandii which contain defined deletions within the nifD and nifK genes which encode, respectively, the alpha and beta subunits of the MoFe protein of nitrogenase were analyzed. When synthesized without its partner, the beta subunit accumulated as a soluble beta 4 tetramer. In contrast, when the alpha subunit was present without its partner, it accumulated primarily as an insoluble aggregate. The solubility of this protein was increased by the presence of a form of the beta subunit which contained a large internal deletion, such that the alpha subunit could participate in the assembly of small amounts of an alpha 2 beta 2 holoprotein. When synthesized alone, the beta subunit was remarkably stable, even when the protein contained a large internal deletion. The alpha subunit, however, was much more rapidly degraded than the beta subunit, both when it was synthesized alone in its native background and when it was synthesized with its beta subunit partner in a foreign background. Antibodies raised against purified alpha 2 beta 2 MoFe protein recognized epitopes only on the nondenatured beta subunit and not on the nondenatured alpha subunit. Our findings that all epitopes for the alpha2beta2 tetramer appeared to be on the beta subunit, that the beta subunit assembled into beta4 tetramers, and that the alpha subunit alone was very insoluble, combined with the previous finding that the Fe protein binds to the beta subunit (A. H. Willing, M. M. Georgiadis, D. C. Rees, and J. B. Howard, J. Biol. Chem. 264:8499-8503, 1989) all suggest that the beta subunit has a more surface location than the alpha subunit in the alpha2beta2 tetramer.
对维涅兰德固氮菌菌株进行了分析,这些菌株在分别编码固氮酶钼铁蛋白的α和β亚基的nifD和nifK基因内含有特定缺失。当β亚基在没有其伴侣的情况下合成时,它以可溶性β4四聚体的形式积累。相反,当α亚基在没有其伴侣的情况下存在时,它主要以不溶性聚集体的形式积累。含有大的内部缺失的β亚基形式的存在增加了该蛋白的溶解度,使得α亚基能够参与少量α2β2全蛋白的组装。当单独合成时,β亚基非常稳定,即使该蛋白含有大的内部缺失。然而,α亚基比β亚基降解得快得多,无论是在其天然背景下单独合成时,还是在异源背景下与β亚基伴侣一起合成时。针对纯化的α2β2钼铁蛋白产生的抗体仅识别未变性的β亚基上的表位,而不识别未变性的α亚基上的表位。我们的发现,即α2β2四聚体的所有表位似乎都在β亚基上,β亚基组装成β4四聚体,以及单独的α亚基非常不溶,再加上先前的发现即铁蛋白与β亚基结合(A. H. 威林、M. M. 乔治亚迪斯、D. C. 里斯和J. B. 霍华德,《生物化学杂志》264:8499 - 8503,1989),所有这些都表明在α2β2四聚体中β亚基比α亚基具有更表面的位置。