Structural Determinants of Vibrio cholerae FeoB Nucleotide Promiscuity
Lee, M.; Magante, K.; Gomez-Garzon, C.; Payne, S. M.; Smith, A. T.
Show abstract
Ferrous iron (Fe2+) is required for the growth and virulence of many pathogenic bacteria, including Vibrio cholerae (Vc), the causative agent of the disease cholera. For this bacterium, Feo is the primary system that transports Fe2+ into the cytosol. FeoB, the main component of this system, is regulated by a soluble cytosolic domain termed NFeoB. Recent reanalysis has shown that NFeoBs can be classified as either GTP-specific or NTP-promiscuous, but the structural and mechanistic bases for these differences were not known. To explore this intriguing property of FeoB, we solved the X-ray crystal structures of VcNFeoB in both the apo and GDP-bound forms. Surprisingly, this promiscuous NTPase displayed a canonical NFeoB G-protein fold like GTP-specific NFeoBs. Using structural bioinformatics, we hypothesized that residues surrounding the nucleobase could be important for both nucleotide affinity and specificity. We then solved the X-ray crystal structures of N150T VcNFeoB in the apo and GDP-bound forms to reveal H-bonding differences surround the guanine nucleobase. Interestingly, isothermal titration calorimetry revealed similar binding thermodynamics of the WT and N150T proteins to guanine nucleotides, while the behavior in the presence of adenine nucleotides was dramatically different. AlphaFold models of VcNFeoB in the presence of ADP and ATP showed important conformational changes that contribute to nucleotide specificity among FeoBs. Combined, these results provide a structural framework for understanding FeoB nucleotide promiscuity, which could be an adaptive measure utilized by pathogens to ensure adequate levels of intracellular iron across multiple metabolic landscapes.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structure of VanS from Vancomycin-Resistant Enterococci: A Sensor Kinase with Weak ATP Binding 98%
- The structure of the monobactam-producing thioesterase domain of SulM forms a unique complex with the upstream carrier protein domain 97%
- On the function of TRAP substrate-binding proteins: conformational variation of the sialic acid binding protein SiaP 97%
Similar papers in this journal
Similar papers in this journal
- Crystal structure and molecular dynamics of human POLDIP2, a multifaceted adaptor protein in metabolism and genome stability 97%
- The evolution of non-motif selectivity determinants in Monosiga brevicollis PDZ domains 96%
- An evolutionarily conserved tryptophan cage promotes folding of the extended RNA recognition motif in the hnRNPR-like protein family 95%
Similar papers in this journal
- Isoleucine binding and regulation of Escherichia coli and Staphylococcus aureus threonine dehydratase (IlvA) 96%
- Environmental Contributions to Proton Sharing in Protein Low-Barrier Hydrogen Bonds 96%
- Identification and characterization of a bacterial periplasmic solute binding protein that binds L-amino acid amides. 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.