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Dive into the research topics where Hiromitsu Shimoyama is active.

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Featured researches published by Hiromitsu Shimoyama.


Journal of Chemical Theory and Computation | 2011

Free Energy Landscapes of Alanine Dipeptide in Explicit Water Reproduced by the Force-Switching Wolf Method.

Yasushige Yonezawa; Ikuo Fukuda; Narutoshi Kamiya; Hiromitsu Shimoyama; Haruki Nakamura

Precise and rapid calculation of long-range interactions is of crucial importance for molecular dynamics (MD) and Monte Carlo simulations. Instead of the Ewald method or its high speed variant, PME, we applied our novel method, called the force-switching Wolf method, to computation of the free energy landscapes of a short peptide in explicit water. Wolf and co-workers showed that long-range electrostatic energy under a periodic boundary condition can be well reproduced even by truncating the contribution from the distant charges, when the charge neutrality is taken into account. We recently applied the procedure proposed by Wolf and co-workers to a mathematically consistent MD theory by means of a force-switching scheme, and we show that the total electrostatic energy for sodium chloride liquid was well conserved and stable during the MD simulation with the force-switching Wolf method. Our current results for an aqueous peptide solution with a series of canonical and multicanonical molecular dynamics simulations show that the force-switching Wolf method is not only in good accordance with the energies and forces calculated by the conventional PME method but also properly reproduces the solvation and the free energy landscapes of the peptide at 300 K.


Journal of Chemical Physics | 2011

Simple and effective application of the Wang-Landau method for multicanonical molecular dynamics simulation.

Hiromitsu Shimoyama; Haruki Nakamura; Yasushige Yonezawa

We propose a novel application of the Wang-Landau method (WLM) for multicanonical molecular dynamics (McMD) simulations. Originally, WLM was developed for Monte Carlo (MC) simulations. Fundamentally, WLM remarkably reduces simulation efforts because it estimates the optimal multicanonical energy function automatically. When WLM is applied to McMD, not only the multicanonical energy but also energy gradient must be estimated adequately. However, because of the rugged multicanonical energy function at the early simulation stage, applications of WLM for MD simulations are difficult and require a smoothing procedure: simulation efforts such as cubic-spline extrapolation and gathering multiple preruns are utilized for smoothing. We propose a simple and effective smoothing method that requires only one additional equation and two time-dependent parameters. As a result, our method produced the correct multicanonical energy function and succeeded in the flat sampling of a small biomolecule with reduced simulation effort.


Journal of Chemical Physics | 2010

Enhanced free-energy calculation using multiscale simulation

Hiromitsu Shimoyama; Yasushige Yonezawa; Haruki Nakamura

We propose a multiscale simulation method combining the efficiency of a coarse-grained model (CGM) and the accuracy of an all-atom model (AAM) for free-energy landscape calculation of protein systems. A proteins conformation space is quickly searched first using CGM. Then the obtained information is incorporated into AAM simulations. The free-energy landscape is subsequently obtained from AAM simulations. This method was tested on chignolin folding. The results demonstrated that the computational time was reduced by as much as 90%.


Chemical Physics Letters | 2011

Multicanonical molecular dynamics simulations combined with Metadynamics for the free energy landscape of a biomolecular system with high energy barriers

Yasushige Yonezawa; Hiromitsu Shimoyama; Haruki Nakamura


Peptide science : proceedings of the ... Japanese Peptide Symposium | 2011

Smoothed Wang-Landau Sampling of a Peptide in Aqueous Solution

Hiromitsu Shimoyama; Yasushige Yonezawa; Haruki Nakamura


Peptide science : proceedings of the ... Japanese Peptide Symposium | 2011

A QM/MM Molecular Dynamics Simulation Study of the Cis-Trans Isomerization Process of N-Methylacetamide

Yasushige Yonezawa; M Standley Daron; Hiromitsu Shimoyama; Haruki Nakamura


Seibutsu Butsuri | 2010

2P308 Simple and easy application of Wang-Landau method to molecular dynamics simulations(The 48th Annual Meeting of the Biophysical Society of Japan)

Hiromitsu Shimoyama; Yasushige Yonezawa; Haruki Nakamura


Seibutsu Butsuri | 2010

2P084 Study on 4'-Phosphopantetheinyl Transfer Reactions to Acyl Carrier Protein : the preliminary processes of Human Fatty Acid Synthesis(The 48th Annual Meeting of the Biophysical Society of Japan)

Yasushige Yonezawa; Hiromitsu Shimoyama; Haruki Nakamura


生物物理 | 2009

2P-039 粗視化モデルを用いた全原子シミュレーションの効率化(蛋白質-物性(安定性,折れたたみなど),第47回日本生物物理学会年会)

Hiromitsu Shimoyama; Yasushige Yonezawa; Haruki Nakamura


Seibutsu Butsuri | 2009

2P-039 Sampling enhancement for all-atom simulation using coarsegrained model(Protein:Property,The 47th Annual Meeting of the Biophysical Society of Japan)

Hiromitsu Shimoyama; Yasushige Yonezawa; Haruki Nakamura

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