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Microbiology 152 (2006), 1639-1647; DOI  10.1099/mic.0.28805-0
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Microbiology 152 (2006), 1639-1647; DOI  10.1099/mic.0.28805-0
© 2006 Society for General Microbiology

The channel-tunnel HI1462 of Haemophilus influenzae reveals differences to Escherichia coli TolC

Georg Polleichtner and Christian Andersen

Universität Würzburg, Lehrstuhl für Biotechnologie, Biozentrum der Universität Würzburg, Am Hubland, D-97074 Würzburg, Germany

Correspondence
Christian Andersen
andersen{at}biozentrum.uni-wuerzburg.de

Efflux pumps play a major role in multidrug resistance of pathogenic bacteria. The TolC homologue HI1462 was identified as the single channel-tunnel in Haemophilus influenzae required to form a functional multidrug efflux pump. The outer-membrane protein was expressed in Escherichia coli, purified and reconstituted in black lipid membranes. It exhibited a comparatively small single-channel conductance of 43 pS in 1 M KCl and is the first known TolC homologue which is anion-selective. The HI1462 structure was modelled and an arginine residue lining the tunnel entrance was identified. The channel-tunnel of a mutant with the arginine substituted by an alanine residue was cation-selective and had a sevenfold higher single-channel conductance compared to wild-type. These results confirm that the arginine is responsible for anion selectivity and forms a salt bridge with a glutamate residue of the adjacent monomer, establishing a circular network, which keeps the tunnel entrance in a tightly closed conformation. In in vivo experiments, both the wild-type HI1462 and the mutant were able to substitute for E. coli TolC in the haemolysin secretion system, but not in the AcrAB/TolC multidrug efflux pump. The structure–function relationship of HI1462 is discussed in the context of the well-studied TolC channel-tunnel of E. coli.


Abbreviations: LDAO, lauryldimethylamine oxide; NTA, nitrilotriacetic acid







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