Osiriphun Yupaporn, Wongtrakoongate Patompon, Sanongkiet Sucharat, Suriyaphol Prapat, Thongboonkerd Visith, Tungpradabkul Sumalee
Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok, Thailand.
J Proteome Res. 2009 Jun;8(6):3118-31. doi: 10.1021/pr900066h.
RpoS subunit of RNA polymerase is a bacterial alternative sigma factor and major regulator important for response to a variety of stress conditions. However, RpoS-dependent genes in Burkholderia pseudomallei remained undefined. We identified the RpoS regulon of B. pseudomallei using a proteomics approach, which revealed 70 differentially expressed proteins between rpoS(+) and rpoS(-) strains. The RpoS-dependent genes were then classified into 14 functional categories, most of which were related to stress response. We then used Hidden Markov Model (HMM) for prediction of RpoS-dependent promoters in 51 genes encoding 63 down-regulated proteins in rpoS(-) strain and successfully defined such promoters, which were classified into three main groups based upon their consensus sequences. Groups 1 and 2, which had the highest potential, were mostly "stress response" genes, whereas Group 3, with the lowest potential, belonged to genes encoding "hypothetical proteins". The promoter prediction was confirmed by 5'-RACE-PCR sequencing. We also expanded and defined RpoS-controlled genes from RpoS regulon, based on proteomic data, RpoS-dependent promoter prediction, gene organization and operon prediction. We finally confirmed the co-expression of these RpoS-dependent genes in operons using RT-PCR. Our data lead to better understanding of RpoS regulation in B. pseudomallei, whose RpoS regulon differs from other Gram-negative bacteria.
RNA聚合酶的RpoS亚基是一种细菌替代西格玛因子,也是对多种应激条件作出反应的重要主要调节因子。然而,类鼻疽伯克霍尔德菌中依赖RpoS的基因仍未明确。我们采用蛋白质组学方法鉴定了类鼻疽伯克霍尔德菌的RpoS调控子,该方法揭示了rpoS(+)和rpoS(-)菌株之间70种差异表达的蛋白质。然后将依赖RpoS的基因分为14个功能类别,其中大多数与应激反应相关。接着,我们使用隐马尔可夫模型(HMM)预测rpoS(-)菌株中63种下调蛋白质的51个编码基因中的RpoS依赖启动子,并成功确定了此类启动子,根据其共有序列将其分为三个主要组。潜力最高的第1组和第2组大多是“应激反应”基因,而潜力最低的第3组属于编码“假设蛋白”的基因。通过5'-RACE-PCR测序证实了启动子预测。我们还基于蛋白质组学数据、RpoS依赖启动子预测、基因组织和操纵子预测,扩展并定义了RpoS调控子中RpoS控制的基因。我们最终使用RT-PCR证实了这些RpoS依赖基因在操纵子中的共表达。我们的数据有助于更好地理解类鼻疽伯克霍尔德菌中的RpoS调控,其RpoS调控子与其他革兰氏阴性菌不同。