Tischler Anna D, Camilli Andrew
Department of Molecular Biology and Microbiology, Tufts University School of Medicine, 136 Harrison Avenue, Boston, Massachusetts 02111, USA.
Infect Immun. 2005 Sep;73(9):5873-82. doi: 10.1128/IAI.73.9.5873-5882.2005.
The cyclic dinucleotide second messenger cyclic diguanylate (c-diGMP) has been implicated in regulation of cell surface properties in several bacterial species, including Vibrio cholerae. Expression of genes required for V. cholerae biofilm formation is activated by an increased intracellular c-diGMP concentration. The response regulator VieA, which contains a domain responsible for degradation of c-diGMP, is required to maintain a low concentration of c-diGMP and repress biofilm formation. The VieSAB three-component signal transduction system was, however, originally identified as a regulator of ctxAB, the genes encoding cholera toxin (CT). Here we show that the c-diGMP phosphodiesterase activity of VieA is required to enhance CT production. This regulation occurred at the transcriptional level, and ectopically altering the c-diGMP concentration by expression of diguanylate cyclase or phosphodiesterase enzymes also affected ctxAB transcription. The c-diGMP phosphodiesterase activity of VieA was also required for maximal transcription toxT but did not influence the activity of ToxR or expression of TcpP. Finally, a single amino acid substitution in VieA that increases the intracellular c-diGMP concentration led to attenuation in the infant mouse model of cholera. Since virulence genes including toxT and ctxA are repressed by a high concentration of c-diGMP, while biofilm genes are activated, we suggest that c-diGMP signaling is important for the transition of V. cholerae from the environment to the host.
环二核苷酸第二信使环二鸟苷酸(c-diGMP)已被证明参与调控包括霍乱弧菌在内的多种细菌的细胞表面特性。霍乱弧菌生物膜形成所需基因的表达会因细胞内c-diGMP浓度升高而被激活。响应调节因子VieA含有一个负责降解c-diGMP的结构域,它对于维持低浓度的c-diGMP和抑制生物膜形成是必需的。然而,VieSAB三组分信号转导系统最初被鉴定为ctxAB的调节因子,ctxAB是编码霍乱毒素(CT)的基因。在这里,我们表明VieA的c-diGMP磷酸二酯酶活性对于增强CT的产生是必需的。这种调节发生在转录水平,通过表达二鸟苷酸环化酶或磷酸二酯酶异位改变c-diGMP浓度也会影响ctxAB的转录。VieA的c-diGMP磷酸二酯酶活性对于toxT的最大转录也是必需的,但不影响ToxR的活性或TcpP的表达。最后,VieA中一个增加细胞内c-diGMP浓度的单氨基酸取代导致在婴儿霍乱小鼠模型中毒力减弱。由于包括toxT和ctxA在内的毒力基因会被高浓度的c-diGMP抑制,而生物膜基因会被激活,我们认为c-diGMP信号传导对于霍乱弧菌从环境向宿主的转变很重要。