Studies of the Interaction between Isoimperatorin and Human Serum Albumin by Multispectroscopic Method: Identification of Possible Binding Site of the Compound Using Esterase Activity of the Protein
Studies of the Interaction between Isoimperatorin and Human Serum Albumin by Multispectroscopic Method: Identification of Possible Binding Site of the Compound Using Esterase Activity of the Protein
Isoimperatorin is one of the main components ofPrangos ferulaceaas a linear furanocoumarin and used as anti‐inflammatory, analgesic, antispasmodic, and anticancer drug. Human serum albumin (HSA) is a principal extracellular protein with a high concentration in blood plasma and carrier for many drugs to different molecular targets. Since the carrying of drug by HSA may affect on its structure and action, we decided to investigate the interaction between HSA and isoimperatorin using fluorescence and UV spectroscopy. Fluorescence data indicated that isoimperatorin quenches the intrinsic fluorescence of the HSA via a static mechanism and hydrophobic interaction play the major role in the drug binding. The binding average distance between isoimperatorin and Trp 214 of HSA was estimated on the basis of the theory of Förster energy transfer. Decrease of protein surface hydrophobicity (PSH) was also documented upon isoimperatorin binding. Furthermore, the synchronous fluorescence spectra show that the microenvironment of the tryptophan residues does not have obvious changes. Site marker compettive and fluorescence experiments revealed that the binding of isoimperatorin to HSA occurred at or near site I. Finally, the binding details between isoimperatorin and HSA were further confirmed by molecular docking and esterase activity inhibition studies which revealed that drug was bound at subdomain IIA.
- Pharmaceutical Sciences Research Center Iran (Islamic Republic of)
- Razi University Iran (Islamic Republic of)
- Kermanshah University of Medical Sciences Iran (Islamic Republic of)
- Isfahan University of Medical Sciences Iran (Islamic Republic of)
Technology, Binding Sites, T, Science, Q, R, Esterases, Tryptophan, Protein Structure, Tertiary, Molecular Docking Simulation, Medicine, Humans, Spectrophotometry, Ultraviolet, Hydrophobic and Hydrophilic Interactions, Serum Albumin, Research Article, Protein Binding
Technology, Binding Sites, T, Science, Q, R, Esterases, Tryptophan, Protein Structure, Tertiary, Molecular Docking Simulation, Medicine, Humans, Spectrophotometry, Ultraviolet, Hydrophobic and Hydrophilic Interactions, Serum Albumin, Research Article, Protein Binding
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