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myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme

Molecular dynamics (MD) is a promising computational approach to investigate dynamical behavior of molecular systems at the atomic level. Here, we present a new MD simulation engine named “myPresto/omegagene” that is tailored for enhanced conformational sampling methods with a non-Ewald electrostati...

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Autores principales: Kasahara, Kota, Ma, Benson, Goto, Kota, Dasgupta, Bhaskar, Higo, Junichi, Fukuda, Ikuo, Mashimo, Tadaaki, Akiyama, Yutaka, Nakamura, Haruki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Biophysical Society of Japan (BSJ) 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5060096/
https://www.ncbi.nlm.nih.gov/pubmed/27924276
http://dx.doi.org/10.2142/biophysico.13.0_209
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author Kasahara, Kota
Ma, Benson
Goto, Kota
Dasgupta, Bhaskar
Higo, Junichi
Fukuda, Ikuo
Mashimo, Tadaaki
Akiyama, Yutaka
Nakamura, Haruki
author_facet Kasahara, Kota
Ma, Benson
Goto, Kota
Dasgupta, Bhaskar
Higo, Junichi
Fukuda, Ikuo
Mashimo, Tadaaki
Akiyama, Yutaka
Nakamura, Haruki
author_sort Kasahara, Kota
collection PubMed
description Molecular dynamics (MD) is a promising computational approach to investigate dynamical behavior of molecular systems at the atomic level. Here, we present a new MD simulation engine named “myPresto/omegagene” that is tailored for enhanced conformational sampling methods with a non-Ewald electrostatic potential scheme. Our enhanced conformational sampling methods, e.g., the virtual-system-coupled multi-canonical MD (V-McMD) method, replace a multi-process parallelized run with multiple independent runs to avoid inter-node communication overhead. In addition, adopting the non-Ewald-based zero-multipole summation method (ZMM) makes it possible to eliminate the Fourier space calculations altogether. The combination of these state-of-the-art techniques realizes efficient and accurate calculations of the conformational ensemble at an equilibrium state. By taking these advantages, myPresto/omegagene is specialized for the single process execution with Graphics Processing Unit (GPU). We performed benchmark simulations for the 20-mer peptide, Trp-cage, with explicit solvent. One of the most thermodynamically stable conformations generated by the V-McMD simulation is very similar to an experimentally solved native conformation. Furthermore, the computation speed is four-times faster than that of our previous simulation engine, myPresto/psygene-G. The new simulator, myPresto/omegagene, is freely available at the following URLs: http://www.protein.osaka-u.ac.jp/rcsfp/pi/omegagene/ and http://presto.protein.osaka-u.ac.jp/myPresto4/.
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spelling pubmed-50600962016-12-06 myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme Kasahara, Kota Ma, Benson Goto, Kota Dasgupta, Bhaskar Higo, Junichi Fukuda, Ikuo Mashimo, Tadaaki Akiyama, Yutaka Nakamura, Haruki Biophys Physicobiol Database and Computer Program Molecular dynamics (MD) is a promising computational approach to investigate dynamical behavior of molecular systems at the atomic level. Here, we present a new MD simulation engine named “myPresto/omegagene” that is tailored for enhanced conformational sampling methods with a non-Ewald electrostatic potential scheme. Our enhanced conformational sampling methods, e.g., the virtual-system-coupled multi-canonical MD (V-McMD) method, replace a multi-process parallelized run with multiple independent runs to avoid inter-node communication overhead. In addition, adopting the non-Ewald-based zero-multipole summation method (ZMM) makes it possible to eliminate the Fourier space calculations altogether. The combination of these state-of-the-art techniques realizes efficient and accurate calculations of the conformational ensemble at an equilibrium state. By taking these advantages, myPresto/omegagene is specialized for the single process execution with Graphics Processing Unit (GPU). We performed benchmark simulations for the 20-mer peptide, Trp-cage, with explicit solvent. One of the most thermodynamically stable conformations generated by the V-McMD simulation is very similar to an experimentally solved native conformation. Furthermore, the computation speed is four-times faster than that of our previous simulation engine, myPresto/psygene-G. The new simulator, myPresto/omegagene, is freely available at the following URLs: http://www.protein.osaka-u.ac.jp/rcsfp/pi/omegagene/ and http://presto.protein.osaka-u.ac.jp/myPresto4/. The Biophysical Society of Japan (BSJ) 2016-09-07 /pmc/articles/PMC5060096/ /pubmed/27924276 http://dx.doi.org/10.2142/biophysico.13.0_209 Text en © 2016 The Biophysical Society of Japan This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Database and Computer Program
Kasahara, Kota
Ma, Benson
Goto, Kota
Dasgupta, Bhaskar
Higo, Junichi
Fukuda, Ikuo
Mashimo, Tadaaki
Akiyama, Yutaka
Nakamura, Haruki
myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme
title myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme
title_full myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme
title_fullStr myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme
title_full_unstemmed myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme
title_short myPresto/omegagene: a GPU-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-Ewald electrostatic scheme
title_sort mypresto/omegagene: a gpu-accelerated molecular dynamics simulator tailored for enhanced conformational sampling methods with a non-ewald electrostatic scheme
topic Database and Computer Program
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5060096/
https://www.ncbi.nlm.nih.gov/pubmed/27924276
http://dx.doi.org/10.2142/biophysico.13.0_209
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