Structural and biochemical analysis of a
B
12
superbinder
Jose M. Martinez Felices, Jacob J. Whittaker, Dirk J. Slotboom, Albert Guskov A prominent bacterial family in the human gut is Bacteroidetes , for which cobalamin (vitamin B 12 ) is an essential micronutrient. Here, we characterized the structural‐function relationships underlying the role of three BtuG family proteins, BtuG1, BtuG2, and BtuG3, in cobalamin acquisition. We solved crystal structures (resolution between 2 and 1.5 Å) of these homologs bound to different cobalamin forms and the precursor cobinamide, and measured the binding affinities by grating coupled interferometry. We observed high binding affinities, with K D values in the low picomolar range, underlining their role in cobalamin scavenging. Mutations based on the structures resulted in altered binding affinities for cobalamin and its precursor. This study provides structural and quantitative insights into the B 12 scavenging mechanism of BtuG proteins.