Huala E, Ausubel F M
Department of Genetics, Harvard Medical School, Boston, Massachusetts 02114.
J Bacteriol. 1989 Jun;171(6):3354-65. doi: 10.1128/jb.171.6.3354-3365.1989.
The Rhizobium meliloti nifA product (NifA) shares extensive homology in its central region and at its C-terminal end with Rhizobium leguminosarum DctD and with NtrC from several species. All three proteins are transcriptional activators of NtrA (RpoN)-RNA polymerase-dependent promoters. Several large deletions of R. meliloti NifA were constructed to investigate the role of the conserved and divergent domains of NifA in transcriptional activity and posttranscriptional regulation by oxygen. The ability of NifA expressed from the Escherichia coli lacZ promoter to activate the R. meliloti nifH promoter in E. coli and R. meliloti was tested under a range of defined atmospheric oxygen partial pressures. Deletion of the divergent N-terminal domain of NifA had little effect on NifA activity and no effect on oxygen sensitivity. Deletion of the conserved C-terminal helix-turn-helix motif of NifA did not eliminate NifA-dependent activation of the nifH promoter, although it did decrease NifA activity about twofold in E. coli and 10-fold in R. meliloti. A NifA carrying both the N-terminal and C-terminal deletions and consisting of only the central highly conserved domain and 50 divergent amino acids retained the ability to activate transcription from the nifH promoter. The transcriptional activity of the conserved central domain is consistent with the prediction that the core domain is the part of NifA which interacts with the transcriptional machinery to stimulate transcription.
苜蓿中华根瘤菌的nifA产物(NifA)在其中心区域和C末端与豌豆根瘤菌的DctD以及多个物种的NtrC具有广泛的同源性。这三种蛋白质都是NtrA(RpoN)-RNA聚合酶依赖性启动子的转录激活因子。构建了苜蓿中华根瘤菌NifA的几个大的缺失片段,以研究NifA保守和不同结构域在转录活性和氧的转录后调控中的作用。在一系列确定的大气氧分压下,测试了从大肠杆菌lacZ启动子表达的NifA在大肠杆菌和苜蓿中华根瘤菌中激活苜蓿中华根瘤菌nifH启动子的能力。缺失NifA不同的N末端结构域对NifA活性影响很小,对氧敏感性没有影响。缺失NifA保守的C末端螺旋-转角-螺旋基序并没有消除NifA对nifH启动子的依赖性激活,尽管它确实使NifA活性在大肠杆菌中降低了约两倍,在苜蓿中华根瘤菌中降低了10倍。一个同时缺失N末端和C末端、仅由中心高度保守结构域和50个不同氨基酸组成的NifA保留了激活nifH启动子转录的能力。保守中心结构域的转录活性与核心结构域是NifA与转录机制相互作用以刺激转录的部分这一预测一致。