Bode Nadine J, Debnath Irina, Kuan Lisa, Schulfer Anjelique, Ty Maureen, Pearson Melanie M
Department of Microbiology, New York University Medical Center, New York, New York, USA.
Department of Microbiology, New York University Medical Center, New York, New York, USA
Infect Immun. 2015 Jun;83(6):2542-56. doi: 10.1128/IAI.02978-14. Epub 2015 Apr 6.
The enteric bacterium Proteus mirabilis is associated with a significant number of catheter-associated urinary tract infections (UTIs). Strict regulation of the antagonistic processes of adhesion and motility, mediated by fimbriae and flagella, respectively, is essential for disease progression. Previously, the transcriptional regulator MrpJ, which is encoded by the mrp fimbrial operon, has been shown to repress both swimming and swarming motility. Here we show that MrpJ affects an array of cellular processes beyond adherence and motility. Microarray analysis found that expression of mrpJ mimicking levels observed during UTIs leads to differential expression of 217 genes related to, among other functions, bacterial virulence, type VI secretion, and metabolism. We probed the molecular mechanism of transcriptional regulation by MrpJ using transcriptional reporters and chromatin immunoprecipitation (ChIP). Binding of MrpJ to two virulence-associated target gene promoters, the promoters of the flagellar master regulator flhDC and mrp itself, appears to be affected by the condensation state of the native chromosome, although both targets share a direct MrpJ binding site proximal to the transcriptional start. Furthermore, an mrpJ deletion mutant colonized the bladders of mice at significantly lower levels in a transurethral model of infection. Additionally, we observed that mrpJ is widely conserved in a collection of recent clinical isolates. Altogether, these findings support a role of MrpJ as a global regulator of P. mirabilis virulence.
肠道细菌奇异变形杆菌与大量导管相关的尿路感染(UTI)有关。严格调控分别由菌毛和鞭毛介导的粘附和运动拮抗过程,对疾病进展至关重要。此前,由菌毛操纵子mrp编码的转录调节因子MrpJ已被证明可抑制游动和群集运动。在此我们表明,MrpJ影响一系列超出粘附和运动的细胞过程。微阵列分析发现,模拟UTI期间观察到的mrpJ表达水平会导致217个基因的差异表达,这些基因与细菌毒力、VI型分泌和代谢等其他功能相关。我们使用转录报告基因和染色质免疫沉淀(ChIP)探究了MrpJ转录调控的分子机制。MrpJ与两个毒力相关靶基因启动子(鞭毛主调节因子flhDC和mrp自身的启动子)的结合似乎受天然染色体凝聚状态的影响,尽管这两个靶标在转录起始附近共享一个直接的MrpJ结合位点。此外,在经尿道感染模型中,mrpJ缺失突变体在小鼠膀胱中的定殖水平显著降低。此外,我们观察到mrpJ在一组近期临床分离株中广泛保守。总之,这些发现支持MrpJ作为奇异变形杆菌毒力全局调节因子的作用。