Exploration of Electrostatic Interaction in the Hydrophobic Pocket of Lysozyme: Importance of Ligand-Induced Perturbation of the Secondary Structure on the Mode of Binding of Exogenous Ligand and Possible Consequences

July 28, 2017

Title

Exploration of Electrostatic Interaction in the Hydrophobic Pocket of Lysozyme: Importance of Ligand-Induced Perturbation of the Secondary Structure on the Mode of Binding of Exogenous Ligand and Possible Consequences

Author

Sudipta Panja, Mintu Halder

Year

2016

Journal

Journal of Photochemistry and Photobiology B: Biology

Abstract

Exogenous ligand binding can be adequate to alter the secondary structure of biomolecules besides other external stimuli. In such cases, structural alterations can complicate on the nature of interaction with the exogenous molecules. In order to accommodate the exogenous ligand, the biomolecule has to unfold resulting in a considerable change to its properties. If the bound ligand can be unbound, the biomolecule gets the opportunity to refold back and return to its native state. Keeping this in mind, we ACCEPTED MANUSCRIPT ACCEPTED MANUSCRIPT 2 have purposely investigated the interaction of tartrazine (TZ), a well abundant azo food colorant, with two homologous lysozymes, namely, human lysozyme (HLZ) and chicken egg white lysozyme (CEWLZ) in physiological pH condition. The binding of TZ with lysozymes has been identified to accompany a ligand-induced secondary structure alteration as indicated by the circular dichroism spectra, and the reduction of -helical content is more with HLZ than CEWLZ. Interestingly, the binding is identified to occur in the electronic ground state of TZ with lysozyme in its hydrophobic cavity, containing excess of positive charge, predominantly via electrostatic interaction. With increase of salinity of the medium the protein tends to refold back due to wakening of electrostatic forces and consequent reduction of strength of ligand interaction and unbinding. The entropy enthalpy compensation (EEC) has been probed to understand the binding features and it is found that CEWLZTZ shows better compensation than HLZ-TZ complex. This is presumably due to the fact that with CEWLZ the binding does not accompany substantial change in the protein secondary structure and hence ineffective to scramble the EEC. The present study initiates the importance of ligand-perturbed structural alteration of biomolecule in controlling the thermodynamics of binding. If there is a considerable alteration of the protein secondary structure due to binding, it is indicative that such changes should bring in the overall loss of activity of protein

Instrument

J-810

Keywords

Circular dichroism, Secondary structure, Ligand binding, Biochemistry