Lehman L J, Roberts G P
Department of Bacteriology, University of Wisconsin-Madison 53706.
J Bacteriol. 1991 Oct;173(19):6159-61. doi: 10.1128/jb.173.19.6159-6161.1991.
Dinitrogenase reductase (Rr2) is required for reduction of the molybdenum dinitrogenase in the nitrogen fixation reaction and is the target of posttranslational regulation in Rhodospirillum rubrum. This posttranslational regulation involves the ADP-ribosylation of Rr2. To study the structural requirements for these two functions of Rr2, i.e., activity and regulation, two site-directed mutations in nifH, the gene encoding Rr2, were constructed and analyzed. The mutations both affected a region of the protein known to be highly conserved in evolution and to be relevant to both of the above properties. These mutants were both Nif-, but one of the altered Rr2s was a substrate for ADP-ribosylation. This demonstrates that the ability of Rr2 to participate in nitrogen fixation can be separated from its ability to act as a substrate for ADP-ribosylation.
固氮酶还原酶(Rr2)是固氮反应中钼固氮酶还原所必需的,并且是深红红螺菌中翻译后调控的靶点。这种翻译后调控涉及Rr2的ADP核糖基化。为了研究Rr2这两种功能(即活性和调控)的结构要求,构建并分析了编码Rr2的基因nifH中的两个定点突变。这两个突变均影响了该蛋白质中一个在进化上高度保守且与上述两种特性均相关的区域。这些突变体均为固氮缺陷型(Nif-),但其中一个改变后的Rr2是ADP核糖基化的底物。这表明Rr2参与固氮的能力可以与其作为ADP核糖基化底物的能力分开。