Genetics and Microbiology Research Group, Departamento de Producción Agraria, Universidad Pública de Navarra, Campus de Arrosadia, 31006 Pamplona, Spain.
Vet Microbiol. 2010 Aug 26;144(3-4):478-83. doi: 10.1016/j.vetmic.2010.01.007. Epub 2010 Jan 28.
Two-component systems (TCSs) are the predominant bacterial signal transduction mechanisms. Species of the genus Brucella are genetically highly related and differ mainly in mammalian host adaptation and pathogenesis. In this study, TCS proteins encoded in the available genome sequences of Brucella species have been identified using bioinformatic methods. All the Brucella species share an identical set of TCS proteins, and the number of TCS proteins in the closely related opportunistic human pathogen Ochrobactrum anthropi was higher than in Brucella species as expected from its lifestyle. O. anthropi lacks orthologs of the Brucella TCSs NodVW, TceSR and TcfSR, suggesting that these TCS proteins could be necessary for the adaptation of Brucella as an intracellular pathogen. This genomic analysis revealed the presence of a differential distribution of TCS pseudogenes among Brucella species. Moreover, there were also differences in TCS pseudogenes between strains belonging to the same Brucella species, and in particular between B. suis biovars 1 and 2.
双组份系统(TCSs)是细菌信号转导的主要机制。布氏杆菌属的物种在遗传上高度相关,主要区别在于对哺乳动物宿主的适应性和发病机制。在这项研究中,使用生物信息学方法鉴定了布氏杆菌属物种的可用基因组序列中编码的 TCS 蛋白。所有布氏杆菌属物种都共享一组相同的 TCS 蛋白,而与其生活方式相符的机会性病原体奥尔森氏菌的 TCS 蛋白数量高于布氏杆菌属物种。奥尔森氏菌缺乏布氏杆菌 TCSs NodVW、TceSR 和 TcfSR 的同源物,这表明这些 TCS 蛋白可能是布氏杆菌作为细胞内病原体适应的必要条件。这项基因组分析揭示了 TCS 假基因在布氏杆菌属物种中的差异分布。此外,在同一布氏杆菌属的菌株之间,特别是在布氏杆菌 1 型和 2 型生物型之间,也存在 TCS 假基因的差异。