Issue 1, 2015

Elucidating the interaction of limonene with bovine serum albumin: a multi-technique approach

Abstract

The interaction of Bovine Serum Albumin (BSA) with limonene has been studied by UV-visible spectroscopy, fluorescence spectroscopy and molecular docking, and its effects on protein conformation, topology and stability were determined by Circular Dichroism (CD), Dynamic Light Scattering (DLS) and Differential Scanning Calorimetry (DSC). A gradual decrease in Stern–Volmer quenching constants with the increase in temperature showed the static mode of fluorescence quenching. The obtained binding constant (Kb) was ∼104 M−1. The temperature dependent Kb, Gibbs free energy (ΔG), enthalpy (ΔH) and entropy (ΔS) changes were calculated, which revealed that the reaction is spontaneous and exothermic. The UV-visible spectra showed a change in the peaks within the aromatic region indicating hydrophobic interactions with Trp, Tyr and Phe in the protein. Moreover, limonene induced an increase in α-helical contents probably on the cost of random coils or/and β-sheets of BSA, as observed from the far-UV CD spectra. The topology of BSA in the presence of limonene was slightly altered, as obtained from DLS results. The stability was also enhanced as revealed through thermal denaturation study by DSC and CD. Molecular docking study depicted that limonene fits into the hydrophobic pocket close to Sudlow site I in domain IIA of BSA. The present study will be helpful in understanding the binding mechanism of limonene and associated stability and conformational changes.

Graphical abstract: Elucidating the interaction of limonene with bovine serum albumin: a multi-technique approach

Supplementary files

Article information

Article type
Paper
Submitted
19 Sep 2014
Accepted
23 Oct 2014
First published
23 Oct 2014

Mol. BioSyst., 2015,11, 307-316

Author version available

Elucidating the interaction of limonene with bovine serum albumin: a multi-technique approach

S. K. Chaturvedi, E. Ahmad, J. M. Khan, P. Alam, M. Ishtikhar and R. H. Khan, Mol. BioSyst., 2015, 11, 307 DOI: 10.1039/C4MB00548A

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