Issue 117, 2015

Theoretical–computational modelling of the electric field effects on protein unfolding thermodynamics

Abstract

In this paper we present a general theoretical–computational approach to model the protein unfolding thermodynamics response to intense electric fields. The method proposed, based on atomistic simulations requiring limited computational effort, seems very promising to predict the unfolding thermodynamics field dependence, shedding light on the mechanisms involved. Application to myoglobin indicates a well defined field interval for a significant unfolding–refolding equilibrium with a melting field intensity ranging from 5.5 × 107 to 6.0 × 107 V m−1 according to the protein–solvent system geometrical shape, suggesting a similar behaviour for other globular proteins.

Graphical abstract: Theoretical–computational modelling of the electric field effects on protein unfolding thermodynamics

Supplementary files

Article information

Article type
Paper
Submitted
04 Aug 2015
Accepted
30 Oct 2015
First published
30 Oct 2015

RSC Adv., 2015,5, 96551-96561

Author version available

Theoretical–computational modelling of the electric field effects on protein unfolding thermodynamics

A. Amadei and P. Marracino, RSC Adv., 2015, 5, 96551 DOI: 10.1039/C5RA15605J

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