Hebert M D, Houghton J E
Department of Biology, Georgia State University, Atlanta 30303, USA.
J Bacteriol. 1997 Dec;179(24):7834-42. doi: 10.1128/jb.179.24.7834-7842.1997.
We have used transpositional mutagenesis of a proline auxotroph (PAO951) to isolate an ornithine utilization (oru) mutant of Pseudomonas aeruginosa (PAO951-4) that was unable to use ornithine efficiently as the sole carbon and nitrogen source. DNA sequence analysis of the inactivated locus confirmed that the transposon had inserted into a locus whose product demonstrated significant primary sequence homology to members of the AraC family of transcriptional activators. DNA mobility shift assays affirmed this potential regulatory function and indicated that the inactivated gene encodes a transcriptional regulator, which has been designated OruR. In trying to define the ornithine utilization phenotype further, a similar inactivation was engineered in the wild-type strain, PAO1. The resulting isolate (PAO1R4) was totally unable to use ornithine as the sole carbon source. Despite the intensified phenotype, this isolate failed to demonstrate significant changes in any of the catabolic or anabolic enzymes that are known to be subject to regulation by the presence of either ornithine or arginine. It did, however, show modified levels of an enzyme, ornithine acetyltransferase (OAcT), that was previously thought to have merely an anaplerotic activity. Definition of this oruR locus and its effects upon OAcT activity provide evidence that control of ornithine levels in P. aeruginosa may have a significant impact upon how the cell is able to monitor and regulate the use of arginine and glutamate as sources of either carbon or nitrogen.
我们利用脯氨酸营养缺陷型菌株(PAO951)的转座诱变技术,分离出铜绿假单胞菌(PAO951 - 4)的鸟氨酸利用(oru)突变体,该突变体无法有效地将鸟氨酸作为唯一的碳源和氮源。对失活位点的DNA序列分析证实,转座子已插入到一个位点,其产物与转录激活因子AraC家族成员具有显著的一级序列同源性。DNA迁移率变动分析证实了这种潜在的调节功能,并表明失活基因编码一种转录调节因子,命名为OruR。为了进一步确定鸟氨酸利用表型,我们在野生型菌株PAO1中设计了类似的失活突变。所得菌株(PAO1R4)完全无法将鸟氨酸作为唯一碳源。尽管表型增强,但该菌株在已知受鸟氨酸或精氨酸存在调控的任何分解代谢或合成代谢酶中均未表现出显著变化。然而,它确实显示出一种酶——鸟氨酸乙酰转移酶(OAcT)的水平发生了改变,该酶此前被认为仅具有回补活性。对这个oruR位点及其对OAcT活性影响的定义提供了证据,表明铜绿假单胞菌中鸟氨酸水平的控制可能对细胞监测和调节利用精氨酸和谷氨酸作为碳源或氮源的方式产生重大影响。