Wu Weihui, Badrane Hassan, Arora Shiwani, Baker Henry V, Jin Shouguang
Department of Molecular Genetics and Microbiology, University of Florida College of Medicine, Gainesville, FL 32610, USA.
J Bacteriol. 2004 Nov;186(22):7575-85. doi: 10.1128/JB.186.22.7575-7585.2004.
The type III secretion system (T3SS) of Pseudomonas aeruginosa is an important virulence factor. The T3SS of P. aeruginosa can be induced by a low calcium signal or upon direct contact with the host cells. The exact pathway of signal sensing and T3SS activation is not clear. By screening a transposon insertion mutant library of the PAK strain, mutation in the mucA gene was found to cause repression of T3SS expression under both type III-inducing and -noninducing conditions. Mutation in the mucA gene is known to cause alginate overproduction, resulting in a mucoid phenotype. Alginate production responds to various environmental stresses and plays a protective role for P. aeruginosa. Comparison of global gene expression of mucA mutant and wild-type PAK under T3SS-inducing conditions confirmed the down regulation of T3SS genes and up regulation of genes involved in alginate biosynthesis. Further analysis indicated that the repression of T3SS in the mucA mutant was AlgU and AlgR dependent, as double mutants mucA/algU and mucA/algR showed normal type III expression. An algR::Gm mutant showed a higher level of type III expression, while overexpression of the algR gene inhibited type III gene expression; thus, it seems that the AlgR-regulated product inhibits the expression of the T3SS genes. It is likely that P. aeruginosa has evolved tight regulatory networks to turn off the energy-expensive T3SS when striving for survival under environmental stresses.
铜绿假单胞菌的III型分泌系统(T3SS)是一种重要的毒力因子。铜绿假单胞菌的T3SS可由低钙信号或与宿主细胞直接接触诱导产生。信号感知和T3SS激活的确切途径尚不清楚。通过筛选PAK菌株的转座子插入突变体文库,发现mucA基因突变在III型诱导和非诱导条件下均会导致T3SS表达受到抑制。已知mucA基因突变会导致藻酸盐过量产生,从而产生黏液样表型。藻酸盐的产生对各种环境应激作出反应,并对铜绿假单胞菌起到保护作用。在T3SS诱导条件下对mucA突变体和野生型PAK的全局基因表达进行比较,证实了T3SS基因的下调和参与藻酸盐生物合成的基因的上调。进一步分析表明,mucA突变体中T3SS的抑制依赖于AlgU和AlgR,因为双突变体mucA/algU和mucA/algR显示出正常的III型表达。algR::Gm突变体显示出更高水平的III型表达,而algR基因的过表达则抑制III型基因表达;因此,似乎AlgR调节的产物抑制了T3SS基因的表达。铜绿假单胞菌很可能已经进化出紧密的调控网络,以便在环境应激下为求生存时关闭耗能的T3SS。