Divalent Metal Ion Binding to Staphylococcus Aureus FeoB Transporter Regions
Overview
Affiliations
Transition metal ions such as iron, copper, zinc, manganese or, nickel are essential in many biological processes. Bacteria have developed a number of mechanisms for their acquisition and transport, in which numerous of proteins and smaller molecules are involved. One of the representatives of these proteins is FeoB, which belongs to the Feo (ferrous ion transporter) family. Although ferrous iron transport system is widespread among microorganisms, it is still poorly described in Gram-positive pathogens, such as Staphylococcus aureus. In this work, combined potentiometric and spectroscopic studies (UV-Vis, CD and EPR) were carried out to determine Cu(II), Fe(II) and Zn(II) binding modes to FeoB fragments (Ac-IDYHKLMK-NH, Ac-ETSHDKY-NH, and Ac-SFLHMVGS-NH). For the first time iron(II) complexes with peptides were characterized by potentiometry. All studied ligands are able to form a variety of thermodynamically stable complexes with transition metal ions. It was concluded that among the studied systems, the most effective metal ion binding is observed for the Ac-ETSHDKY-NH peptide. Moreover, comparing preferences of all ligands towards different metal ions, copper(II) complexes are the most stable ones at physiological pH.
Morrison K, Reiss M, Tanner T, Gollott T, Loots G, Collette N Sci Rep. 2024; 14(1):1762.
PMID: 38243067 PMC: 10798972. DOI: 10.1038/s41598-024-52082-8.
Exogenous methionine contributes to reversing the resistance of to macrolides.
Dong C, Wu T, Dong Y, Qu Q, Chen X, Li Y Microbiol Spectr. 2024; 12(2):e0280323.
PMID: 38230928 PMC: 10923279. DOI: 10.1128/spectrum.02803-23.
Orzel B, Pelucelli A, Ostrowska M, Potocki S, Kozlowski H, Peana M Inorg Chem. 2023; 62(45):18607-18624.
PMID: 37910812 PMC: 10647171. DOI: 10.1021/acs.inorgchem.3c02910.