| Literature DB >> 28812944 |
Somaye Shahraki1, Ali Heydari2.
Abstract
Ligand binding studies on carrier proteins are crucial in determining the pharmacological properties of drug candidates. Here, a new palladium(II) complex was synthesized and characterized. The in vitro binding studies of this complex with two carrier proteins, human serum albumin (HSA), and β-lactoglobulin (βLG) were investigated by employing biophysical techniques as well as computational modeling. The experimental results showed that the Pd(II) complex interacted with two carrier proteins with moderate binding affinity (Kb ≈ .5 × 104 M-1 for HSA and .2 × 103 M-1 for βLG). Binding of Pd(II) complex to HSA and βLG caused strong fluorescence quenching of both proteins through static quenching mechanism. In two studied systems hydrogen bonds and van der Waals forces were the major stabilizing forces in the drug-protein complex formation. UV-Visible and FT-IR measurements indicated that the binding of above complex to HSA and βLG may induce conformational and micro-environmental changes of two proteins. Protein-ligand docking analysis confirmed that the Pd(II) complex binds to residues located in the subdomain IIA of HSA and site A of βLG. All these experimental and computational results suggest that βLG and HSA might act as carrier protein for Pd(II) complex to deliver it to the target molecules.Entities:
Keywords: Ala, Alanine; Cys, Cysteine; DFT, Density Functional Theory; DMSO, Dimethyl sulfoxide; HOMO, highest occupied molecular orbital; HSA, Human Serum Albumin; LUMO, lowest unoccupied molecular orbital; Leu, Leucine; Lys, Lysine; NMR, Nuclear Magnetic Resonance; Pd(II) complex; Pro, Proline; Schiff base; TMS, Tetramethylsilane; Trp, Tryptophan; Tyr, Tyrosine; Val, Valine; human serum albumin; protein interactions; β-lactoglobulin; βLG, β-lactoglobulin
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Year: 2017 PMID: 28812944 DOI: 10.1080/07391102.2017.1367723
Source DB: PubMed Journal: J Biomol Struct Dyn ISSN: 0739-1102