Effect of ibuprofen and warfarin on the allosteric properties of haem–human serum albumin: A spectroscopic study
2001
Baroni, Simona | Mattu, Marco | Vannini, Alessandro | Cipollone, Rita | Aime, Silvio | Ascenzi, Paolo | Fasano, Mauro
Haem binding to human serum albumin (HSA) endows the protein with peculiar spectroscopic properties. Here, the effect of ibuprofen and warfarin on the spectroscopic properties of ferric haem–human serum albumin (ferric HSA–haem) and of ferrous nitrosylated haem–human serum albumin (ferrous HSA–haemâNO) is reported. Ferric HSA–haem is hexaâcoordinated, the haemâiron atom being bonded to His105 and Tyr148. Upon drug binding to the warfarin primary site, the displacement of water moleculesâ−âburied in close proximity to the haem binding pocketâ−âinduces perturbation of the electronic absorbance properties of the chromophore without affecting the coordination number or the spin state of the haemâiron, and the quenching of the 1HâNMR relaxivity. Values of Kd for ibuprofen and warfarin binding to the warfarin primary site of ferric HSA–haem, corresponding to the ibuprofen secondary cleft, are 5.4â±â1.1â×â10−4âm and 2.1â±â0.4â×â10−5âm, respectively. The affinity of ibuprofen and warfarin for the warfarin primary cleft of ferric HSA–haem is lower than that reported for drug binding to haemâfree HSA. Accordingly, the Kd value for haem binding to HSA increases from 1.3â±â0.2â×â10−8âm in the absence of drugs to 1.5â±â0.2â×â10−7âm in the presence of ibuprofen and warfarin. Ferrous HSA–haemâNO is a fiveâcoordinated haemâiron system. Drug binding to the warfarin primary site of ferrous HSA–haemâNO induces the transition towards the sixâcoordinated haemâiron species, the haemâiron atom being bonded to His105. Remarkably, the ibuprofen primary cleft appears to be functionally and spectroscopically uncoupled from the haem site of HSA. Present results represent a clearâcut evidence for the drugâinduced shift of allosteric equilibrium(a) of HSA.
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