Title of article :
In Vitro Study of Acriflavine Interaction with Horseradish Peroxidase C
Author/Authors :
Khavari-Nejad، S. نويسنده Faculty of Biological Sciences,Kharazmi University,Karaj,Iran , , Attar، F. نويسنده Faculty of Food Industry & Agriculture,Department of Biology,Standard Research Institute (SRI),Karaj,Iran ,
Issue Information :
دوفصلنامه با شماره پیاپی سال 2015
Abstract :
Acriflavine (3,6diaminoacridine) is an anticeptic drug developed in 1912. Previous research has focused on investigation of the intercalating features of acriflavine, but little is known about its interaction with proteins. Drugreceptor interaction is of major interest in clinical science. The aim of the present study was to evaluate the ability of acriflavine to induce alterations in conformation and function of peroxidase, a critical enzyme in cell survival. Horseradish peroxidase C (HRPC) activity was determined by measuring H2O2dependent oxidation of odianisidine at 460 nm using an extinction coefficient of 11.3 Mm1 cm1. Apparent Km and Vmax values were then calculated. The electronic absorption spectra were recorded for 300700 nm. Both Kd and ΔG were calculated from changes in the absorbance of 403 nm. Intrinsic fluorescence was detected for the 297 nm excitation and the emission was recorded for 300700 nm wavelengths. The SternVolmer constant and Hill coefficients were then obtained. All measurements were performed in 0.1 M citrate buffer, pH 4.0. Results indicated that acriflavine either stimulated or inhibited HRPC activity depending on concentration and preincubation time. The Drugreceptor complex formation occurred via binding of four molecules of acriflavine in two different binding sites on HRPC, and the heme environment became more polar. Finally, acriflavine quenched the only tryptophan residue of HRPC. The alterations in HRPC conformation identified in the present study, suggest that drugs that induce apoptosis could alter critical cell protein conformation and function.
Keywords :
Acriflavine , Horseradish peroxidase C , Enzyme activity , Drug-protein interaction , Spectroscopy
Journal title :
Biomacromolecular Journal
Journal title :
Biomacromolecular Journal