Gaspar J A, Thomas J A, Marolda C L, Valvano M A
Departments of Microbiology and Immunology, and Medicine, University of Western Ontario, London, Ontario N6A 5C1, Canada.
Mol Microbiol. 2000 Oct;38(2):262-75. doi: 10.1046/j.1365-2958.2000.02094.x.
We investigated the involvement of Tol proteins in the surface expression of lipopolysaccharide (LPS). tolQ, -R, -A and -B mutants of Escherichia coli K-12, which do not form a complete LPS-containing O antigen, were transformed with the O7+ cosmid pJHCV32. The tolA and tolQ mutants showed reduced O7 LPS expression compared with the respective isogenic parent strains. No changes in O7 LPS expression were found in the other tol mutants. The O7-deficient phenotype in the tolQ and tolA mutants was complemented with a plasmid encoding the tolQRA operon, but not with a similar plasmid containing a frameshift mutation inactivating tolA. Therefore, the reduction in O7 LPS was attributed to the lack of a functional tolA gene, caused either by a direct mutation of this gene or by a polar effect on tolA gene expression exerted by the tolQ mutation. Reduced surface expression of O7 LPS was not caused by changes in lipid A-core structure or downregulation of the O7 LPS promoter. However, an abnormal accumulation of radiolabelled mannose was detected in the plasma membrane. As mannose is a sugar unique to the O7 subunit, this result suggested the presence of accumulated O7 LPS biosynthesis intermediates. Attempts to construct a tolA mutant in the E. coli O7 wild-type strain VW187 were unsuccessful, suggesting that this mutation is lethal. In contrast, a polar tolQ mutation affecting tolA expression in VW187 caused slow growth rate and serum sensitivity in addition to reduced O7 LPS production. VW187 tolQ cells showed an elongated morphology and became permeable to the membrane-impermeable dye propidium iodide. All these phenotypes were corrected upon complementation with cloned tol genes but were not restored by complementation with the tolQRA operon containing the frameshift mutation in tolA. Our results demonstrate that the TolA protein plays a critical role in the surface expression of O antigen subunits by an as yet uncharacterized involvement in the processing of O antigen.
我们研究了Tol蛋白在脂多糖(LPS)表面表达中的作用。用含有O7 + 黏粒pJHCV32转化大肠杆菌K-12的tolQ、-R、-A和 -B突变体,这些突变体不形成完整的含LPS的O抗原。与各自的同基因亲本菌株相比,tolA和tolQ突变体显示O7 LPS表达降低。在其他tol突变体中未发现O7 LPS表达的变化。tolQ和tolA突变体中的O7缺陷表型可被编码tolQRA操纵子的质粒互补,但不能被含有使tolA失活的移码突变的类似质粒互补。因此,O7 LPS的减少归因于功能性tolA基因的缺失,这是由该基因的直接突变或tolQ突变对tolA基因表达产生的极性效应引起的。O7 LPS表面表达的降低不是由脂质A核心结构的变化或O7 LPS启动子的下调引起的。然而,在质膜中检测到放射性标记的甘露糖异常积累。由于甘露糖是O7亚基特有的糖,该结果表明存在积累的O7 LPS生物合成中间体。在大肠杆菌O7野生型菌株VW187中构建tolA突变体的尝试未成功,表明该突变是致死的。相反,影响VW187中tolA表达的极性tolQ突变除了降低O7 LPS产生外,还导致生长速率缓慢和血清敏感性。VW187 tolQ细胞呈现细长形态,并且对膜不可渗透的染料碘化丙啶变得通透。所有这些表型在与克隆的tol基因互补后得到纠正,但不能通过与含有tolA移码突变的tolQRA操纵子互补来恢复。我们的结果表明,TolA蛋白通过尚未明确的参与O抗原加工过程,在O抗原亚基的表面表达中起关键作用。