Andrade Maxuel O, Alegria Marcos Castanheira, Guzzo Cristiane R, Docena Cassia, Rosa Maria Claudia Pareda, Ramos Carlos H I, Farah Chuck S
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes, 748, CEP 05599-970 São Paulo, SP, Brazil.
Mol Microbiol. 2006 Oct;62(2):537-51. doi: 10.1111/j.1365-2958.2006.05386.x.
Bacteria use extracellular levels of small diffusible autoinducers to estimate local cell-density (quorum-sensing) and to regulate complex physiological processes. The quorum-sensing signal transduction pathway of Xanthomonas spp. phytopathogens has special features that distinguish it from that of other pathogens. This pathway consists of RpfF, necessary for the production of the unique autoinducer 'diffusible signalling factor' (DSF), and RpfC and RpfG, a two-component system necessary for the DSF-dependent production of extracellular pathogenicity factors and cellular dispersion. Yeast two-hybrid and direct in vitro assays were used to identify interactions involving the Rpf group of proteins. We show that RpfC, a protein consisting of N-terminal transmembrane, histidine kinase, response-regulator and C-terminal histidine phosphotransfer domains interacts with both RpfG, a protein consisting of an N-terminal response regulator domain and a C-terminal HD-GYP domain, and with RpfF. We also show that RpfC interacts with the only known homologue of 'conditioned medium factor', which is involved in quorum-sensing in Dictyostelium discoideum under conditions of nutritional stress. Furthermore, RpfCG is shown to interact with a second two-component system made up of NtrB and NtrC homologues. Finally we show that the recently characterized HD-GYP phosphodiesterase domain of RpfG interacts directly with diguanylate cyclase GGDEF domain-containing proteins coded by the Xanthomonas axonopodis pv. citri genome, which in other bacteria produce cyclic diGMP, an important second messenger involved in the regulation of complex bacterial processes including biofilm production, virulence and motility. These results demonstrate a direct physical linkage between quorum-sensing and cyclic diGMP signalling pathways in bacteria.
细菌利用细胞外可扩散的小自诱导物水平来估计局部细胞密度(群体感应)并调节复杂的生理过程。黄单胞菌属植物病原体的群体感应信号转导途径具有使其有别于其他病原体的特殊特征。该途径由产生独特自诱导物“可扩散信号因子”(DSF)所必需的RpfF,以及DSF依赖性细胞外致病因子产生和细胞扩散所必需的双组分系统RpfC和RpfG组成。利用酵母双杂交和直接体外试验来鉴定涉及Rpf蛋白组的相互作用。我们发现,由N端跨膜、组氨酸激酶、反应调节子和C端组氨酸磷酸转移结构域组成的RpfC蛋白,与由N端反应调节子结构域和C端HD-GYP结构域组成的RpfG蛋白以及RpfF蛋白都相互作用。我们还发现,RpfC与“条件培养基因子”的唯一已知同源物相互作用,该同源物在营养应激条件下参与盘基网柄菌的群体感应。此外,RpfCG被证明与由NtrB和NtrC同源物组成的第二个双组分系统相互作用。最后,我们发现RpfG最近被鉴定的HD-GYP磷酸二酯酶结构域直接与柑橘溃疡病菌基因组编码的含二鸟苷酸环化酶GGDEF结构域的蛋白相互作用,在其他细菌中,这些蛋白产生环二鸟苷酸,这是一种重要的第二信使,参与包括生物膜形成、毒力和运动性在内的复杂细菌过程的调节。这些结果证明了细菌中群体感应和环二鸟苷酸信号通路之间存在直接的物理联系。