In Vivo Evidence for TonB Dimerization
Open Access
- 1 October 2003
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 185 (19) , 5747-5754
- https://doi.org/10.1128/jb.185.19.5747-5754.2003
Abstract
TonB, in complex with ExbB and ExbD, is required for the energy-dependent transport of ferric siderophores across the outer membrane ofEscherichia coli, the killing of cells by group B colicins, and infection by phages T1 and φ80. To gain insights into the protein complex, TonB dimerization was studied by constructing hybrid proteins from complete TonB (containing amino acids 1 to 239) [TonB(1-239)] and the cytoplasmic fragment of ToxR which, when dimerized, activates the transcription of the cholera toxin genectx. ToxR(1-182)-TonB(1-239) activated the transcription oflacZunder the control of thectxpromoter (Pctx::lacZ). Replacement of the TonB transmembrane region by the ToxR transmembrane region resulted in the hybrid proteins ToxR(1-210)-TonB(33-239) and ToxR(1-210)-TonB(164-239), of which only the latter activated Pctx::lacZtranscription. Dimer formation was reduced but not abolished in a mutant lacking ExbB and ExbD, suggesting that these complex components may influence dimerization but are not strictly required and that the N-terminal cytoplasmic membrane anchor and the C-terminal region are important for dimer formation. The periplasmic TonB fragment, TonB(33-239), inhibits ferrichrome and ferric citrate transport and induction of the ferric citrate transport system. This competition provided a means to positively screen for TonB(33-239) mutants which displayed no inhibition. Single point mutations of inactive fragments selected in this manner were introduced into complete TonB, and the phenotypes of the TonB mutant strains were determined. The mutations located in the C-terminal half of TonB, three of which (Y163C, V188E, and R204C) were obtained separately by site-directed mutagenesis, as was the isolated F230V mutation, were studied in more detail. They displayed different activity levels for various TonB-dependent functions, suggesting function-related specificities which reflect differences in the interactions of TonB with various transporters and receptors.Keywords
This publication has 54 references indexed in Scilit:
- Studies on transformation of Escherichia coli with plasmidsPublished by Elsevier ,2006
- Interactions between the Outer Membrane Ferric Citrate Transporter FecA and TonB: Studies of the FecA TonB BoxJournal of Bacteriology, 2003
- Crystal Structure of the Dimeric C-terminal Domain of TonB Reveals a Novel FoldJournal of Biological Chemistry, 2001
- Conserved Residues Ser16 and His20 and Their Relative Positioning Are Essential for TonB Activity, Cross-linking of TonB with ExbB, and the Ability of TonB to Respond to Proton Motive ForceJournal of Biological Chemistry, 2001
- Energy-coupled colicin transport through the outer membrane ofEscherichia coliK-12: mutated TonB proteins alter receptor activities and colicin uptakeFEMS Microbiology Letters, 1994
- Energy-dependent receptor activities of Escherichia coli K-12: mutated TonB proteins alter FhuA receptor activities to phages T5, T1, ⊘80 and to colicin MFEMS Microbiology Letters, 1994
- Activity domains of the TonB proteinMolecular Microbiology, 1993
- The tonB gene of Serratia marcescens: sequence, activity and partial complementation of Escherichia coli tonB mutantsMolecular Microbiology, 1991
- Vitamin B12 transport in Escherichia coli: energy coupling between membranesMolecular Microbiology, 1990
- In vivo evidence for FhuA outer membrane receptor interaction with the TonB inner membrane protein of Escherichia coliFEBS Letters, 1990