Daigle Denis M, Cao Lily, Fraud Sebastien, Wilke Mark S, Pacey Angela, Klinoski Rachael, Strynadka Natalie C, Dean Charles R, Poole Keith
Department of Microbiology and Immunology, Queen's University, Kingston, Ontario, Canada K7L 3N6.
J Bacteriol. 2007 Aug;189(15):5441-51. doi: 10.1128/JB.00543-07. Epub 2007 Jun 1.
nalC multidrug-resistant mutants of Pseudomonas aeruginosa show enhanced expression of the mexAB-oprM multidrug efflux system as a direct result of the production of a ca. 6,100-Da protein, PA3719, in these mutants. Using a bacterial two-hybrid system, PA3719 was shown to interact in vivo with MexR, a repressor of mexAB-oprM expression. Isothermal titration calorimetry (ITC) studies confirmed a high-affinity interaction (equilibrium dissociation constant [K(D)], 158.0 +/- 18.1 nM) of PA3719 with MexR in vitro. PA3719 binding to and formation of a complex with MexR obviated repressor binding to its operator, which overlaps the efflux operon promoter, suggesting that mexAB-oprM hyperexpression in nalC mutants results from PA3719 modulation of MexR repressor activity. Consistent with this, MexR repression of mexA transcription in an in vitro transcription assay was alleviated by PA3719. Mutations in MexR compromising its interaction with PA3719 in vivo were isolated and shown to be located internally and distributed throughout the protein, suggesting that they impacted PA3719 binding by altering MexR structure or conformation rather than by having residues interacting specifically with PA3719. Four of six mutant MexR proteins studied retained repressor activity even in a nalC strain producing PA3719. Again, this is consistent with a PA3719 interaction with MexR being necessary to obviate MexR repressor activity. The gene encoding PA3719 has thus been renamed armR (antirepressor for MexR). A representative "noninteracting" mutant MexR protein, MexR(I104F), was purified, and ITC confirmed that it bound PA3719 with reduced affinity (5.4-fold reduced; K(D), 853.2 +/- 151.1 nM). Consistent with this, MexR(I104F) repressor activity, as assessed using the in vitro transcription assay, was only weakly compromised by PA3719. Finally, two mutations (L36P and W45A) in ArmR compromising its interaction with MexR have been isolated and mapped to a putative C-terminal alpha-helix of the protein that alone is sufficient for interaction with MexR.
铜绿假单胞菌的nalC多药耐药突变体中,mexAB-oprM多药外排系统的表达增强,这是这些突变体中产生一种约6100道尔顿的蛋白质PA3719的直接结果。使用细菌双杂交系统,发现PA3719在体内与MexR相互作用,MexR是mexAB-oprM表达的阻遏物。等温滴定量热法(ITC)研究证实,PA3719在体外与MexR具有高亲和力相互作用(平衡解离常数[K(D)],158.0±18.1 nM)。PA3719与MexR的结合及复合物的形成消除了阻遏物与其操纵子的结合,该操纵子与外排操纵子启动子重叠,这表明nalC突变体中mexAB-oprM的高表达是PA3719调节MexR阻遏活性的结果。与此一致的是,在体外转录试验中,PA3719减轻了MexR对mexA转录的抑制。分离出在体内损害MexR与PA3719相互作用的MexR突变,这些突变位于蛋白质内部且分布于整个蛋白质,这表明它们通过改变MexR的结构或构象而非通过具有与PA3719特异性相互作用的残基来影响PA3719的结合。所研究的六个突变MexR蛋白中有四个即使在产生PA3719的nalC菌株中仍保留阻遏活性。同样,这与PA3719与MexR的相互作用是消除MexR阻遏活性所必需的一致。因此,编码PA3719的基因已重新命名为armR(MexR的抗阻遏物)。纯化了一个代表性的“非相互作用”突变MexR蛋白MexR(I104F),ITC证实它与PA3719的结合亲和力降低(降低了5.4倍;K(D),853.2±151.1 nM)。与此一致的是,使用体外转录试验评估,MexR(I104F)的阻遏活性仅受到PA3719的微弱损害。最后,分离出ArmR中损害其与MexR相互作用的两个突变(L36P和W45A),并将其定位到该蛋白质假定的C末端α螺旋上,该螺旋单独就足以与MexR相互作用。