Bugrysheva Julia V, Pappas Christopher J, Terekhova Darya A, Iyer Radha, Godfrey Henry P, Schwartz Ira, Cabello Felipe C
Department of Microbiology and Immunology, New York Medical College, Valhalla, New York, 10595, United States of America.
Department of Pathology, New York Medical College, Valhalla, New York, 10595, United States of America.
PLoS One. 2015 Feb 17;10(2):e0118063. doi: 10.1371/journal.pone.0118063. eCollection 2015.
The bacterial stringent response is triggered by deficiencies of available nutrients and other environmental stresses. It is mediated by 5'-triphosphate-guanosine-3'-diphosphate and 5'-diphosphate-guanosine-3'-diphosphate (collectively (p)ppGpp) and generates global changes in gene expression and metabolism that enable bacteria to adapt to and survive these challenges. Borrelia burgdorferi encounters multiple stressors in its cycling between ticks and mammals that could trigger the stringent response. We have previously shown that the B. burgdorferi stringent response is mediated by a single enzyme, RelBbu, with both (p)ppGpp synthase and hydrolase activities, and that a B. burgdorferi 297 relBbu null deletion mutant was defective in adapting to stationary phase, incapable of down-regulating synthesis of rRNA and could not infect mice. We have now used this deletion mutant and microarray analysis to identify genes comprising the rel regulon in B. burgdorferi cultured at 34°C, and found that transcription of genes involved in glycerol metabolism is induced by relBbu. Culture of the wild type parental strain, the relBbu deletion mutant and its complemented derivative at 34°C and 25°C in media containing glucose or glycerol as principal carbon sources revealed a growth defect in the mutant, most evident at the lower temperature. Transcriptional analysis of the glp operon for glycerol uptake and metabolism in these three strains confirmed that relBbu was necessary and sufficient to increase transcription of this operon in the presence of glycerol at both temperatures. These results confirm and extend previous findings regarding the stringent response in B. burgdorferi. They also demonstrate that the stringent response regulates glycerol metabolism in this organism and is likely crucial for its optimal growth in ticks.
细菌的严谨反应由可用营养物质的缺乏和其他环境压力触发。它由5'-三磷酸鸟苷-3'-二磷酸和5'-二磷酸鸟苷-3'-二磷酸(统称为(p)ppGpp)介导,并在基因表达和代谢方面产生全局性变化,使细菌能够适应并在这些挑战中存活下来。伯氏疏螺旋体在蜱和哺乳动物之间循环时会遇到多种应激源,这些应激源可能触发严谨反应。我们之前已经表明,伯氏疏螺旋体的严谨反应由单一酶RelBbu介导,RelBbu同时具有(p)ppGpp合成酶和水解酶活性,并且伯氏疏螺旋体297 relBbu基因缺失突变体在适应稳定期方面存在缺陷,无法下调rRNA的合成,并且不能感染小鼠。我们现在利用这个缺失突变体和微阵列分析来鉴定在34°C培养的伯氏疏螺旋体中构成rel调节子的基因,发现参与甘油代谢的基因转录由relBbu诱导。在含有葡萄糖或甘油作为主要碳源的培养基中,将野生型亲本菌株、relBbu缺失突变体及其互补衍生物在34°C和25°C下培养,结果显示突变体存在生长缺陷,在较低温度下最为明显。对这三个菌株中负责甘油摄取和代谢的glp操纵子进行转录分析证实,relBbu在两个温度下甘油存在时增加该操纵子的转录是必要且充分的。这些结果证实并扩展了先前关于伯氏疏螺旋体严谨反应的研究发现。它们还表明严谨反应调节该生物体中的甘油代谢,并且可能对其在蜱中的最佳生长至关重要。