Lewis Janina P, Iyer Divya, Anaya-Bergman Cecilia
Department of Biochemistry and Molecular Biology, Virginia Commonwealth University, Richmond, VA, USA.
Department of Microbiology and Immunology, Virginia Commonwealth University, Richmond, VA, USA.
Microbiology (Reading). 2009 Nov;155(Pt 11):3758-3774. doi: 10.1099/mic.0.027953-0. Epub 2009 Aug 14.
Porphyromonas gingivalis, previously classified as a strict anaerobe, can grow in the presence of low concentrations of oxygen. Microarray analysis revealed alteration in gene expression in the presence of 6 % oxygen. During the exponential growth phase, 96 genes were upregulated and 79 genes were downregulated 1.4-fold. Genes encoding proteins that play a role in oxidative stress protection were upregulated, including alkyl hydroperoxide reductase (ahpCF), superoxide dismutase (sod) and thiol peroxidase (tpx). Significant changes in gene expression of proteins that mediate oxidative metabolism, such as cytochrome d ubiquinol oxidase-encoding genes, cydA and cydB, were detected. The expression of genes encoding formate uptake transporter (PG0209) and formate tetrahydrofolate ligase (fhs) was drastically elevated, which indicates that formate metabolism plays a major role under aerobic conditions. The concomitant reduction of expression of a gene encoding the lactate transporter PG1340 suggests decreased utilization of this nutrient. The concentrations of both formate and lactate were assessed in culture supernatants and cells, and they were in agreement with the results obtained at the transcriptional level. Also, genes encoding gingipain protease secretion/maturation regulator (porR) and protease transporter (porT) had reduced expression in the presence of oxygen, which also correlated with reduced protease activities under aerobic conditions. In addition, metal transport was affected, and while iron-uptake genes such as the genes encoding the haemin uptake locus (hmu) were downregulated, expression of manganese transporter genes, such as feoB2, was elevated in the presence of oxygen. Finally, genes encoding putative regulatory proteins such as extracellular function (ECF) sigma factors as well as small proteins had elevated expression levels in the presence of oxygen. As P. gingivalis is distantly related to the well-studied model organism Escherichia coli, results from our work may provide further understanding of oxygen metabolism and protection in other related bacteria belonging to the phylum Bacteroidetes.
牙龈卟啉单胞菌,以前被归类为严格厌氧菌,现在可以在低浓度氧气环境中生长。微阵列分析显示,在6%氧气存在的情况下,基因表达发生了改变。在指数生长期,96个基因上调,79个基因下调了1.4倍。编码在氧化应激保护中起作用的蛋白质的基因上调,包括烷基过氧化氢还原酶(ahpCF)、超氧化物歧化酶(sod)和硫醇过氧化物酶(tpx)。检测到介导氧化代谢的蛋白质的基因表达有显著变化,如编码细胞色素d泛醇氧化酶的基因cydA和cydB。编码甲酸摄取转运蛋白(PG0209)和甲酸四氢叶酸连接酶(fhs)的基因表达大幅升高,这表明甲酸代谢在有氧条件下起主要作用。编码乳酸转运蛋白PG1340的基因表达同时降低,表明这种营养物质的利用率下降。对培养上清液和细胞中的甲酸和乳酸浓度进行了评估,结果与转录水平获得的结果一致。此外,编码牙龈蛋白酶分泌/成熟调节因子(porR)和蛋白酶转运蛋白(porT)的基因在氧气存在时表达降低,这也与有氧条件下蛋白酶活性降低相关。此外,金属转运受到影响,虽然编码血红素摄取位点(hmu)等铁摄取基因下调,但在氧气存在时,锰转运蛋白基因如feoB2的表达升高。最后,编码假定调节蛋白如细胞外功能(ECF)σ因子以及小蛋白的基因在氧气存在时表达水平升高。由于牙龈卟啉单胞菌与研究充分的模式生物大肠杆菌亲缘关系较远,我们的研究结果可能有助于进一步了解属于拟杆菌门的其他相关细菌中的氧代谢和保护机制。