The Five-To-Six-Coordination Transition of Ferric Human Serum Heme-Albumin Is Allosterically-Modulated by Ibuprofen and Warfarin: A Combined XAS and MD Study
Articolo
Data di Pubblicazione:
2014
Abstract:
Human serum albumin (HSA) is involved physiologically in heme
scavenging; in turn, heme-albumin (HSA-heme-Fe) displays globin-like
properties. Here, the allosteric effect of ibuprofen and warfarin on the
local atomic structure around the ferric heme-Fe (heme-Fe(III)) atom of
HSA-heme-Fe (HSA-heme-Fe(III)) has been probed by Fe-K edge X-ray
absorption spectroscopy (XAS). The quantitative analysis of the Fe-K
edge extended X-ray absorption fine structure (EXAFS) signals and
modeling of the near edge (XANES) spectral features demonstrated that
warfarin and ibuprofen binding modify the local structure of the
heme-Fe(III). Combined XAS data analysis and targeted molecular dynamics
(MD) simulations provided atomic resolution insights of protein
structural rearrangements required to accommodate the heme-Fe(III) upon
ibuprofen and warfarin binding. In the absence of drugs, the
heme-Fe(III) atom is penta-coordinated having distorted 4+1
configuration made by the nitrogen atoms of the porphyrin ring and the
oxygen phenoxy atom of the Tyr161 residue. MD simulations show that
ibuprofen and warfarin association to the secondary fatty acid (FA)
binding site 2 (FA2) induces a reorientation of domain I of
HSA-heme-Fe(III), this leads to the redirection of the His146 residue
providing an additional bond to the heme-Fe(III) atom, providing the 5+1
configuration. The comparison of Fe-K edge XANES spectra calculated
using MD structures with those obtained experimentally confirms the
reliability of the proposed structural model. As a whole, combining XAS
and MD simulations it has been possible to provide a reliable model of
the heme-Fe(III) atom coordination state and to understand the complex
allosteric transition occurring in HSA-heme-Fe(III) upon ibuprofen and
warfarin binding.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Meneghini, Carlo; Leboffe, Loris; Bionducci, Monica; Fanali, Gabriella; Meli, Massimiliano; Colombo, Giorgio; Fasano, Mauro; Ascenzi, Paolo; Mobilio, Settimio
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