Vasil M L, Ochsner U A, Johnson Z, Colmer J A, Hamood A N
Department of Microbiology, University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.
J Bacteriol. 1998 Dec;180(24):6784-8. doi: 10.1128/JB.180.24.6784-6788.1998.
We previously identified a novel regulator of the exotoxin A gene (toxA) in Pseudomonas aeruginosa, PtxR, that belongs to the LysR family of prokaryotic regulatory proteins. Preliminary data also suggest that PtxR affects the expression of siderophores in P. aeruginosa. Because toxA expression and siderophore production in this organism are coordinately regulated by the ferric uptake regulator (Fur) and the Fur-regulated alternative sigma factor PvdS, regulation of ptxR itself in the context of these regulators was examined. RNase protection analyses of ptxR transcription revealed that there are two independent transcription initiation sites (T1 and T2). While transcription from the promoter of T1 is constitutive throughout the growth cycle of PAO1, transcription from the second promoter (P2) is negatively affected by iron. Transcription from the P2 promoter is constitutive in a fur mutant under microaerobic conditions but still iron regulated during aerobic growth. High concentrations (>100 nM) of the ferric uptake regulatory protein (Fur) failed to bind to either of the promoter regions of ptxR in either gel mobility shift assays or DNase I footprint experiments. These results indicate that Fur indirectly regulates the iron-dependent expression of ptxR. Iron-regulated transcription of ptxR from the P2 promoter, but not constitutive expression from the P1 promoter, was dependent on the Fur-regulated alternative sigma factor gene pvdS, even under aerobic conditions. Consequently, there are two levels of iron-regulated expression of ptxR. The iron-regulated expression of ptxR under microaerobic conditions from the P2 promoter of ptxR is mediated indirectly by Fur through the iron-regulated expression of pvdS. In contrast, pvdS-mediated iron regulation of ptxR under aerobic conditions is Fur independent.
我们之前在铜绿假单胞菌中鉴定出一种外毒素A基因(toxA)的新型调节因子PtxR,它属于原核调节蛋白的LysR家族。初步数据还表明,PtxR会影响铜绿假单胞菌中铁载体的表达。由于该菌中toxA的表达和铁载体的产生受铁摄取调节因子(Fur)和Fur调节的替代sigma因子PvdS的协同调控,因此我们研究了在这些调节因子背景下ptxR自身的调控情况。对ptxR转录的核糖核酸酶保护分析表明,存在两个独立的转录起始位点(T1和T2)。虽然来自T1启动子的转录在PAO1的整个生长周期中都是组成型的,但来自第二个启动子(P2)的转录受到铁的负面影响。在微需氧条件下,P2启动子的转录在fur突变体中是组成型的,但在有氧生长过程中仍受铁调控。在凝胶迁移率变动分析或DNase I足迹实验中,高浓度(>100 nM)的铁摄取调节蛋白(Fur)均无法与ptxR的任何一个启动子区域结合。这些结果表明,Fur间接调节ptxR的铁依赖性表达。即使在有氧条件下,P2启动子对ptxR的铁调节转录而非P1启动子的组成型表达也依赖于Fur调节的替代sigma因子基因pvdS。因此,ptxR存在两个水平的铁调节表达。在微需氧条件下,ptxR的P2启动子的铁调节表达是由Fur通过pvdS的铁调节表达间接介导的。相比之下,在有氧条件下,pvdS介导的ptxR的铁调节是不依赖Fur的。