Abstract
Heme carrier HasA has a unique type of histidine/tyrosine heme iron ligation in which the iron ion is in a thermally driven two spin states equilibrium. We recently suggested that the H-bonding between Tyr75 and the invariantly conserved residue His83 modulates the strength of the iron-Tyr75 bond. To unravel the role of His83, we characterize the iron ligation and the electronic properties of both wild type and H83A mutant by a variety of spectroscopic techniques. Although His 83 in wild type modulates the strength of the Tyr-iron bond, its removal causes detachment of the tyrosine ligand, thus giving rise to a series of pH-dependent equilibria among species with different axial ligation. The five coordinated species detected at physiological pH may represent a possible intermediate of the heme transfer mechanism to the receptor. © 2008 by The American Society for Biochemistry and Molecular Biology, Inc.
Cite
CITATION STYLE
Caillet-Saguy, C., Turano, P., Piccioli, M., Lukat-Rodgers, G. S., Czjzek, M., Guigliarelli, B., … Lecroisey, A. (2008). Deciphering the structural role of histidine 83 for heme binding in hemophore HasA. Journal of Biological Chemistry, 283(9), 5960–5970. https://doi.org/10.1074/jbc.M703795200
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.