Chitosan Nanoparticles-Trypsin Interactions: Bio-physicochemical and Molecular Dynamics Simulation Studies

July 28, 2017

Title

Chitosan Nanoparticles-Trypsin Interactions: Bio-physicochemical and Molecular Dynamics Simulation Studies

Author

Safoura Salar, Faramarz Mehrnejad, Reza Hassan Sajedi, Javad Mohammadnejad Arough

Year

2017

Journal

International Journal of Biological Macromolecules

Abstract

Herein, we investigated the effect of the chitosan nanoparticles (CsNP) on the structure, dynamics, and activity of trypsin. The enzyme activity in complex with the nanoparticles slightly increased, which represents the interactions between the nanoparticles and the enzyme. The kinetic parameters of the enzyme, Km and kcat, increased after adding the nanoparticles, resulting in a slight increase in the catalytic efficiency (kcat/ Km). However, the effect of the nanoparticles on the kinetic stability of trypsin has not exhibited significant variations. Fluorescence spectroscopy did not show remarkable changes in the trypsin conformation in the presence of the nanoparticles. The circular dichroism (CD) spectroscopy results also revealed the secondary structure of trypsin attached to the nanoparticles slightly changed. Furthermore, we used molecular dynamics (MD) simulation to find more information about the interaction mechanisms between the nanoparticles and trypsin. The root mean square deviation (RMSD) of Cα atoms results have shown that in the presence of the nanoparticles, trypsin was stable. The simulation and the calculation of the binding free energy demonstrate that the nonpolar interactions are the most important forces for the formation of stable nanoparticle-trypsin complex. This study has explicitly elucidated that the nanoparticles have not considerable effect on the trypsin.

Instrument

J-810

Keywords

Circular dichroism, Secondary structure, Nanostructures, Biochemistry, Materials