Grunwald S K, Lies D P, Roberts G P, Ludden P W
Department of Biochemistry, University of Wisconsin-Madison 53706.
J Bacteriol. 1995 Feb;177(3):628-35. doi: 10.1128/jb.177.3.628-635.1995.
Rhodospirillum rubrum strains that overexpress the enzymes involved in posttranslational nitrogenase regulation, dinitrogenase reductase ADP-ribosyltransferase (DRAT) and dinitrogenase reductase activating glycohydrolase (DRAG), were constructed, and the effect of this overexpression on in vivo DRAT and DRAG regulation was investigated. Broad-host-range plasmid constructs containing a fusion of the R. rubrum nifH promoter and translation initiation sequences to the second codon of draT, the first gene of the dra operon, were constructed. Overexpression plasmid constructs which overexpressed (i) only functional DRAT, (ii) only functional DRAG and presumably the putative downstream open reading frame (ORF)-encoded protein, or (iii) all three proteins were generated and introduced into wild-type R. rubrum. Overexpression of DRAT still allowed proper regulation of nitrogenase activity, with ADP-ribosylation of dinitrogenase reductase by DRAT occurring only upon dark or ammonium stimuli, suggesting that DRAT is still regulated upon overexpression. However, overexpression of DRAG and the downstream ORF altered nitrogenase regulation such that dinitrogenase reductase did not accumulate in the ADP-ribosylated form under inactivation conditions, suggesting that DRAG was constitutively active and that therefore DRAG regulation is altered upon overexpression. Proper DRAG regulation was observed in a strain overexpressing DRAT, DRAG, and the downstream ORF, suggesting that a proper balance of DRAT and DRAG levels is required for proper DRAG regulation.
构建了过表达参与翻译后固氮酶调控的酶(二氮酶还原酶 ADP 核糖基转移酶(DRAT)和二氮酶还原酶激活糖水解酶(DRAG))的深红红螺菌菌株,并研究了这种过表达对体内 DRAT 和 DRAG 调控的影响。构建了宽宿主范围的质粒构建体,其包含深红红螺菌 nifH 启动子和翻译起始序列与 dra 操纵子的第一个基因 draT 的第二个密码子的融合。产生了过表达(i)仅功能性 DRAT、(ii)仅功能性 DRAG 以及推测的推定下游开放阅读框(ORF)编码的蛋白质或(iii)所有三种蛋白质的过表达质粒构建体,并将其引入野生型深红红螺菌中。DRAT 的过表达仍允许对固氮酶活性进行适当调控,DRAT 对二氮酶还原酶的 ADP 核糖基化仅在黑暗或铵刺激时发生,这表明 DRAT 在过表达时仍受到调控。然而,DRAG 和下游 ORF 的过表达改变了固氮酶调控,使得在失活条件下二氮酶还原酶不会以 ADP 核糖基化形式积累,这表明 DRAG 是组成型活性的,因此 DRAG 调控在过表达时发生改变。在过表达 DRAT、DRAG 和下游 ORF 的菌株中观察到了适当的 DRAG 调控,这表明适当的 DRAG 调控需要 DRAT 和 DRAG 水平的适当平衡。