Literature DB >> 31710727

Visualizing biomolecular electrostatics in virtual reality with UnityMol-APBS.

Joseph Laureanti1, Juan Brandi1, Elvis Offor1, David Engel1, Robert Rallo1, Bojana Ginovska1, Xavier Martinez2,3, Marc Baaden2,3, Nathan A Baker4,5.   

Abstract

Virtual reality is a powerful tool with the ability to immerse a user within a completely external environment. This immersion is particularly useful when visualizing and analyzing interactions between small organic molecules, molecular inorganic complexes, and biomolecular systems such as redox proteins and enzymes. A common tool used in the biomedical community to analyze such interactions is the Adaptive Poisson-Boltzmann Solver (APBS) software, which was developed to solve the equations of continuum electrostatics for large biomolecular assemblages. Numerous applications exist for using APBS in the biomedical community including analysis of protein ligand interactions and APBS has enjoyed widespread adoption throughout the biomedical community. Currently, typical use of the full APBS toolset is completed via the command line followed by visualization using a variety of two-dimensional external molecular visualization software. This process has inherent limitations: visualization of three-dimensional objects using a two-dimensional interface masks important information within the depth component. Herein, we have developed a single application, UnityMol-APBS, that provides a dual experience where users can utilize the full range of the APBS toolset, without the use of a command line interface, by use of a simple graphical user interface (GUI) for either a standard desktop or immersive virtual reality experience.
© 2019 The Protein Society.

Keywords:  electrostatics; molecular visualization; solvation; virtual reality

Mesh:

Substances:

Year:  2019        PMID: 31710727      PMCID: PMC6933841          DOI: 10.1002/pro.3773

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


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1.  Visualizing biomolecular electrostatics in virtual reality with UnityMol-APBS.

Authors:  Joseph Laureanti; Juan Brandi; Elvis Offor; David Engel; Robert Rallo; Bojana Ginovska; Xavier Martinez; Marc Baaden; Nathan A Baker
Journal:  Protein Sci       Date:  2019-11-25       Impact factor: 6.725

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