Sennhauser Gaby, Bukowska Magdalena A, Briand Christophe, Grütter Markus G
Department of Biochemistry, University of Zurich, Switzerland.
J Mol Biol. 2009 May 29;389(1):134-45. doi: 10.1016/j.jmb.2009.04.001. Epub 2009 Apr 8.
We report here the crystal structure of the Pseudomonas aeruginosa multidrug exporter MexB, an intensively studied member of the resistance-nodulation-cell division family of secondary active transporters, at 3.0 A. MexB forms an asymmetric homotrimer where each subunit adopts a different conformation representing three snapshots of the transport cycle similar to the recently determined structures of its close homologue AcrB from Escherichia coli, so far the sole structurally characterized member of the superfamily. As for AcrB, the conformations of two subunits can be clearly assigned to either the binding step or the extrusion step in the transport process. Unexpectedly, a remarkable conformational shift in the third subunit is observed in MexB, which has potential implications for the assembly of the tripartite MexAB-OprM drug efflux system. Furthermore, an n-dodecyl-d-maltoside molecule was found bound to the internal multidrug-binding cavity, which might indicate that MexB binds and transports detergent molecules as substrates. As the only missing piece of the puzzle in the MexAB-OprM system, the X-ray structure of MexB completes the molecular picture of the major pump mediating intrinsic and acquired multidrug resistance in P. aeruginosa.
我们在此报告铜绿假单胞菌多药外排泵MexB的晶体结构,其分辨率为3.0埃。MexB是二级主动转运蛋白抗性-结瘤-细胞分裂家族中经过深入研究的成员。MexB形成一个不对称同三聚体,其中每个亚基采用不同的构象,代表转运循环的三个瞬间,类似于最近确定的其来自大肠杆菌的紧密同源物AcrB的结构,AcrB是迄今为止该超家族中唯一具有结构特征的成员。与AcrB一样,两个亚基的构象可以明确地归属于转运过程中的结合步骤或外排步骤。出乎意料的是,在MexB中观察到第三个亚基有显著的构象转变,这对三方MexAB-OprM药物外排系统的组装可能有影响。此外,发现一个正十二烷基-β-D-麦芽糖苷分子结合到内部多药结合腔,这可能表明MexB将去污剂分子作为底物进行结合和转运。作为MexAB-OprM系统中唯一缺失的部分,MexB的X射线结构完善了介导铜绿假单胞菌固有和获得性多药抗性的主要泵的分子图景。