Related Experiment Video
Updated: May 10, 2026

Characterization of Membrane Transporters by Heterologous Expression in E. coli and Production of Membrane Vesicles
Published on: December 31, 2019
Receptor-substrate competition for the TonB homolog FusB suggests a model for ferredoxin import
Marta Wojnowska1, Victor Flores1, Tamas Yelland2
1Department of Biochemistry, University of Cambridge, Cambridge, United Kingdom.
Abstract:
TonB-dependent uptake systems of gram-negative bacterial pathogens constitute prominent virulence factors, allowing nutrients-primarily siderophore-bound iron-to cross the highly impermeable outer membrane. Remarkably, the ferredoxin uptake system (Fus) of certain soft rot plant pathogens imports an entire host protein into the periplasm and extracts its bound iron for growth. The inner membrane protein FusB, a TonB homolog, plays two roles in facilitating import. First, like other TonBs, it remodels the globular plug domain obstructing the lumen of the outer membrane receptor FusA to allow ferredoxin passage. Unusually for a TonB protein, FusB then interacts directly with the FusA-bound ferredoxin substrate to facilitate its transport into the periplasm. Here, we describe structures of the FusB homodimer as well as the FusB-ferredoxin complex and, using biophysical, biochemical, and mutagenesis approaches, we determine the key features of the binding interfaces formed by FusB with FusA and ferredoxin. The C-terminal domain of FusB (FusB-CTD) exists in a monomer-dimer equilibrium in vitro, with the homodimer stabilized by an intermolecular R241-D322 salt bridge. The "FusB-box" of FusA interacts with monomeric FusB-CTD, and FusA D53 outcompetes FusB D322 to bind R241. Upon ferredoxin binding, FusB-CTD undergoes a structural rearrangement, expanding its β-sheet from three to four strands. In agreement with the proposed sequence of events, ferredoxin binding displaces FusA from FusB with R241 forming an intramolecular salt bridge with D322 to stabilize the newly formed β-hairpin of FusB. We propose a mechanistic model for ferredoxin import where FusB R241 acts as a molecular switch.
More Related Videos
11:10Protein-protein Interactions Visualized by Bimolecular Fluorescence Complementation in Tobacco Protoplasts and Leaves
Published on: March 9, 2014
14:34Determination of Tripartite Interaction between Two Monomers of a MADS-box Transcription Factor and a Calcium Sensor Protein by BiFC-FRET-FLIM Assay
Published on: December 25, 2021
Related Concept Videos
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
The Electron Transport Chain
Inhibitors of the electron transport chain
Rotenone, a widely used pesticide, prevents electron transfer from Fe-S cluster to ubiquinone or Q in...
Electron Transport Chain Components
Electron Transport Chain: Complex III and IV
ABC Transporters: Importer
In bacteria, based on the number of transmembrane helices and the chemical nature of their substrates, the ABC importers can be divided into three types:
Secondary Active Transport