Going Outside the TonB Box: Identification of Novel FepA-TonB Interactions .

J Bacteriol

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania, USA

Published: May 2017

AI Article Synopsis

  • In Gram-negative bacteria, the TonB protein facilitates the transport of nutrients by transferring energy from the cytoplasmic membrane to TonB-dependent transporters in the outer membrane.
  • Researchers used photo-cross-linking with the FepA transporter to identify multiple interaction sites on its cork domain, revealing that the TonB box isn't the only key area for TonB's action.
  • Findings suggest that the transport process is more intricate than previously thought, indicating a need for a revised model of how TonB interacts with transporters, particularly in the presence and absence of ligands.

Article Abstract

In Gram-negative bacteria, the cytoplasmic membrane protein TonB transmits energy derived from proton motive force to energize transport of important nutrients through TonB-dependent transporters in the outer membrane. Each transporter consists of a beta barrel domain and a lumen-occluding cork domain containing an essential sequence called the TonB box. To date, the only identified site of transporter-TonB interaction is between the TonB box and residues ∼158 to 162 of TonB. While the mechanism of ligand transport is a mystery, a current model based on site-directed spin labeling and molecular dynamics simulations is that, following ligand binding, the otherwise-sequestered TonB box extends into the periplasm for recognition by TonB, which mediates transport by pulling or twisting the cork. In this study, we tested that hypothesis with the outer membrane transporter FepA using photo-cross-linking to explore interactions of its TonB box and determine whether additional FepA-TonB interaction sites exist. We found numerous specific sites of FepA interaction with TonB on the periplasmic face of the FepA cork in addition to the TonB box. Two residues, T32 and A33, might constitute a ligand-sensitive conformational switch. The facts that some interactions were enhanced in the absence of ligand and that other interactions did not require the TonB box argued against the current model and suggested that the transport process is more complex than originally conceived, with subtleties that might provide a mechanism for discrimination among ligand-loaded transporters. These results constitute the first study on the dynamics of TonB-gated transporter interaction with TonB The TonB system of Gram-negative bacteria has a noncanonical active transport mechanism involving signal transduction and proteins integral to both membranes. To achieve transport, the cytoplasmic membrane protein TonB physically contacts outer membrane transporters such as FepA. Only one contact between TonB and outer membrane transporters has been identified to date: the TonB box at the transporter amino terminus. The TonB box has low information content, raising the question of how TonB can discriminate among multiple different TonB-dependent transporters present in the bacterium if it is the only means of contact. Here we identified several additional sites through which FepA contacts TonB , including two neighboring residues that may explain how FepA signals to TonB that ligand has bound.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5405211PMC
http://dx.doi.org/10.1128/JB.00649-16DOI Listing

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