Literature DB >> 28100926

Are coarse-grained models apt to detect protein thermal stability? The case of OPEP force field.

Maria Kalimeri1, Philippe Derreumaux2, Fabio Sterpone1.   

Abstract

We present the first investigation of the kinetic and thermodynamic stability of two homologous thermophilic and mesophilic proteins based on the coarse-grained model OPEP. The object of our investigation is a pair of G-domains of relatively large size, 200 amino acids each, with an experimental stability gap of about 40 K. The OPEP force field is able to maintain stable the fold of these relatively large proteins within the hundrend-nanosecond time scale without including external constraints. This makes possible to characterize the conformational landscape of the folded protein as well as to explore the unfolding. In agreement with all-atom simulations used as a reference, we show that the conformational landscape of the thermophilic protein is characterized by a larger number of substates with slower dynamics on the network of states and more resilient to temperature increase. Moreover, we verify the stability gap between the two proteins using replica-exchange simulations and estimate a difference between the melting temperatures of about 23 K, in fair agreement with experiment. The detailed investigation of the unfolding thermodynamics, allows to gain insight into the mechanism underlying the enhanced stability of the thermophile relating it to a smaller heat capacity of unfolding.

Entities:  

Keywords:  coarse-grained force field; conformational substates; molecular dynamics; protein thermodynamic stability; thermophilic proteins

Year:  2014        PMID: 28100926      PMCID: PMC5238951          DOI: 10.1016/j.jnoncrysol.2014.07.005

Source DB:  PubMed          Journal:  J Non Cryst Solids        ISSN: 0022-3093            Impact factor:   3.531


  47 in total

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Review 9.  Energy landscapes: some new horizons.

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Review 10.  The OPEP protein model: from single molecules, amyloid formation, crowding and hydrodynamics to DNA/RNA systems.

Authors:  Fabio Sterpone; Simone Melchionna; Pierre Tuffery; Samuela Pasquali; Normand Mousseau; Tristan Cragnolini; Yassmine Chebaro; Jean-Francois St-Pierre; Maria Kalimeri; Alessandro Barducci; Yoann Laurin; Alex Tek; Marc Baaden; Phuong Hoang Nguyen; Philippe Derreumaux
Journal:  Chem Soc Rev       Date:  2014-04-23       Impact factor: 54.564

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  5 in total

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4.  Dynamics of Amyloid Formation from Simplified Representation to Atomistic Simulations.

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5.  Protein Simulations in Fluids: Coupling the OPEP Coarse-Grained Force Field with Hydrodynamics.

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  5 in total

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