Literature DB >> 33180485

Combining Virtual Reality Visualization with Ensemble Molecular Dynamics to Study Complex Protein Conformational Changes.

Jordi Juárez-Jiménez1, Philip Tew2, Michael O Connor3,4,5, Salomé Llabrés1, Rebecca Sage2, David Glowacki3,4,5, Julien Michel1.   

Abstract

Molecular dynamics (MD) simulations are increasingly used to elucidate relationships between protein structure, dynamics, and their biological function. Currently, it is extremely challenging to perform MD simulations of large-scale structural rearrangements in proteins that occur on millisecond timescales or beyond, as this requires very significant computational resources, or the use of cumbersome "collective variable" enhanced sampling protocols. Here, we describe a framework that combines ensemble MD simulations and virtual reality visualization (eMD-VR) to enable users to interactively generate realistic descriptions of large amplitude, millisecond timescale protein conformational changes in proteins. Detailed tests demonstrate that eMD-VR substantially decreases the computational cost of folding simulations of a WW domain, without the need to define collective variables a priori. We further show that eMD-VR generated pathways can be combined with Markov state models to describe the thermodynamics and kinetics of large-scale loop motions in the enzyme cyclophilin A. Our results suggest eMD-VR is a powerful tool for exploring protein energy landscapes in bioengineering efforts.

Year:  2020        PMID: 33180485     DOI: 10.1021/acs.jcim.0c00221

Source DB:  PubMed          Journal:  J Chem Inf Model        ISSN: 1549-9596            Impact factor:   4.956


  2 in total

Review 1.  Augmented Reality, a Review of a Way to Represent and Manipulate 3D Chemical Structures.

Authors:  Alba Fombona-Pascual; Javier Fombona; Rubén Vicente
Journal:  J Chem Inf Model       Date:  2022-04-04       Impact factor: 6.162

2.  A virtual reality classroom to teach and explore crystal solid state structures.

Authors:  Erica Stella; Isabella Agosti; Nicoletta Di Blas; Marco Finazzi; Pier Luca Lanzi; Daniele Loiacono
Journal:  Multimed Tools Appl       Date:  2022-08-11       Impact factor: 2.577

  2 in total

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