Hung Deborah T, Mekalanos John J
Department of Microbiology and Molecular Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2005 Feb 22;102(8):3028-33. doi: 10.1073/pnas.0409559102. Epub 2005 Feb 7.
The production of cholera toxin (CT) during Vibrio cholerae infection results in the hallmark diarrhea that characterizes the disease cholera. The transmembrane protein ToxR was originally identified as a functional transcriptional activator of ctxAB in a heterologous Escherichia coli system. However, direct ToxR activation of the ctxAB promoter in V. cholerae has not been previously demonstrated. Instead, a regulatory cascade has been defined in which the activators ToxRS and TcpPH modulate ctxAB expression by acting in concert to transcriptionally activate another regulator, ToxT. ToxT, in turn, directly activates ctxAB expression as well as expression of the tcp genes and other virulence-associated genes. In this study, we show that ToxRS directly activates ctxAB in a ToxT-independent manner in a classical biotype V. cholerae, and that this activation requires the presence of bile acids. Although the levels of CT induced by this mechanism are lower than levels induced under other in vitro conditions, the bile-dependent conditions described here are more physiologic, being independent of pH and temperature. We further show that the inability of bile acids to stimulate ToxRS-dependent expression of CT in El Tor biotype strains is related to the differences between classical and El Tor ctxAB promoters, which differ in the number of heptad TTTTGAT repeats in their respective upstream regions. The ability of bile acids to stimulate direct activation of ctxAB by ToxRS depends upon the transmembrane domain of ToxR, which may interact with bile acids in the inner membrane of V. cholerae.
霍乱弧菌感染期间霍乱毒素(CT)的产生会导致典型的腹泻,这是霍乱这种疾病的特征。跨膜蛋白ToxR最初在异源大肠杆菌系统中被鉴定为ctxAB的功能性转录激活因子。然而,此前尚未证明ToxR在霍乱弧菌中直接激活ctxAB启动子。相反,已经确定了一个调控级联,其中激活因子ToxRS和TcpPH通过协同作用转录激活另一个调节因子ToxT来调节ctxAB的表达。反过来,ToxT直接激活ctxAB的表达以及tcp基因和其他毒力相关基因的表达。在本研究中,我们表明在经典生物型霍乱弧菌中,ToxRS以不依赖ToxT的方式直接激活ctxAB,并且这种激活需要胆汁酸的存在。尽管通过这种机制诱导的CT水平低于其他体外条件下诱导的水平,但此处描述的胆汁依赖性条件更符合生理情况,不受pH和温度的影响。我们进一步表明,胆汁酸无法刺激埃尔托生物型菌株中ToxRS依赖性CT表达与经典和埃尔托ctxAB启动子之间的差异有关,它们各自上游区域的七联体TTTTGAT重复序列数量不同。胆汁酸刺激ToxRS直接激活ctxAB的能力取决于ToxR的跨膜结构域,该结构域可能与霍乱弧菌内膜中的胆汁酸相互作用。