Rambow-Larsen Amy A, Rajashekara Gireesh, Petersen Erik, Splitter Gary
Department of Pathobiological Sciences, University of Wisconsin-Madison, 1656 Linden Dr., Madison, WI 53706, USA.
J Bacteriol. 2008 May;190(9):3274-82. doi: 10.1128/JB.01915-07. Epub 2008 Feb 29.
Brucella melitensis is an intracellular pathogen that establishes a replicative niche within macrophages. While the intracellular lifestyle of Brucella is poorly understood and few virulence factors have been identified, components of a quorum-sensing pathway in Brucella have recently been identified. The LuxR-type regulatory protein, VjbR, and an N-acylhomoserine lactone signaling molecule are both involved in regulating expression of the virB-encoded type IV secretion system. We have identified a second LuxR-type regulatory protein (BlxR) in Brucella. Microarray analysis of a blxR mutant suggests that BlxR regulates the expression of a number of genes, including those encoding the type IV secretion system and flagella. Confirming these results, deletion of blxR in B. melitensis reduced the transcriptional activities of promoters for the virB operon, flagellar genes, and another putative virulence factor gene, bopA. Furthermore, our data suggested that both BlxR and VjbR are positively autoregulated and cross-regulate the expression of each other. The blxR deletion strain exhibited reduced growth in macrophages, similar to that observed for a vjbR deletion strain. However, unlike the vjbR deletion, the blxR deletion did not fully attenuate virulence in mice. More strikingly, bioluminescent imaging revealed that dissemination of the blxR mutant was similar to that of wild-type B. melitensis, while the vjbR mutant was defective for systemic spread in IRF-1(-/-) mice, suggesting that these regulators are not functionally redundant but that they converge in a common pathway regulating bacterial processes.
羊布鲁氏菌是一种细胞内病原体,可在巨噬细胞内建立复制微环境。虽然人们对布鲁氏菌的细胞内生活方式了解甚少,且仅鉴定出少数毒力因子,但最近已鉴定出布鲁氏菌群体感应途径的组成部分。LuxR型调节蛋白VjbR和N-酰基高丝氨酸内酯信号分子均参与调控virB编码的IV型分泌系统的表达。我们在布鲁氏菌中鉴定出了第二种LuxR型调节蛋白(BlxR)。对blxR突变体的微阵列分析表明,BlxR调节许多基因的表达,包括那些编码IV型分泌系统和鞭毛的基因。证实这些结果的是,在羊布鲁氏菌中缺失blxR降低了virB操纵子、鞭毛基因和另一个假定毒力因子基因bopA启动子的转录活性。此外,我们的数据表明,BlxR和VjbR均为正向自我调节,并相互交叉调节彼此的表达。blxR缺失菌株在巨噬细胞中的生长减少,类似于vjbR缺失菌株的情况。然而,与vjbR缺失不同的是,blxR缺失并未使小鼠的毒力完全减弱。更引人注目的是,生物发光成像显示,blxR突变体的传播与野生型羊布鲁氏菌相似,而vjbR突变体在IRF-1(-/-)小鼠中全身扩散存在缺陷,这表明这些调节因子在功能上并非冗余,但它们在调节细菌过程的共同途径中汇聚。