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Locating the Binding Sites of Pb(II) Ion with Human and Bovine Serum Albumins
Author(s) -
Ahmed Belatik,
Surat Hotchandani,
Robert Carpentier,
HeidarAli TajmirRiahi
Publication year - 2012
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0036723
Subject(s) - chemistry , bovine serum albumin , binding constant , binding site , metal , metal ions in aqueous solution , human serum albumin , x ray photoelectron spectroscopy , nuclear chemistry , crystallography , biochemistry , organic chemistry , physics , nuclear magnetic resonance
Lead is a potent environmental toxin that has accumulated above its natural level as a result of human activity. Pb cation shows major affinity towards protein complexation and it has been used as modulator of protein-membrane interactions. We located the binding sites of Pb(II) with human serum (HSA) and bovine serum albumins (BSA) at physiological conditions, using constant protein concentration and various Pb contents. FTIR, UV-visible, CD, fluorescence and X-ray photoelectron spectroscopic (XPS) methods were used to analyse Pb binding sites, the binding constant and the effect of metal ion complexation on HSA and BSA stability and conformations. Structural analysis showed that Pb binds strongly to HSA and BSA via hydrophilic contacts with overall binding constants of K Pb-HSA  = 8.2 (±0.8)×10 4 M −1 and K Pb-BSA  = 7.5 (±0.7)×10 4 M −1 . The number of bound Pb cation per protein is 0.7 per HSA and BSA complexes. XPS located the binding sites of Pb cation with protein N and O atoms. Pb complexation alters protein conformation by a major reduction of α-helix from 57% (free HSA) to 48% (metal-complex) and 63% (free BSA) to 52% (metal-complex) inducing a partial protein destabilization.

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