2019
DOI: 10.1021/acs.jctc.9b00160
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Accelerating Membrane Simulations with Hydrogen Mass Repartitioning

Abstract: The time step of atomistic molecular dynamics (MD) simulations is determined by the fastest motions in the system and is typically limited to 2 fs. An increasingly popular approach is to increase the mass of the hydrogen atoms to ∼3 amu and decrease the mass of the parent atom by an equivalent amount. This approach, known as hydrogen-mass repartitioning (HMR), permits time steps up to 4 fs with reasonable simulation stability. While HMR has been applied in many published studies to date, it has not been extens… Show more

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Cited by 109 publications
(120 citation statements)
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References 110 publications
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“…A 2-fs time step was used for the first 250 ns, after which hydrogen mass repartitioning (HMR) was employed to reach a time step of 4 fs for the remainder of the simulations. HMR has recently been demonsrated to be applicable to membrane-protein systems with little to no effect on dynamics 55 . For the steered MD simulation, a murine IgG1 antibody (taken from PDB 1IGY) was added to the STm-B system and pulled towards the OmpD loops at 1.0 Å/ns for 70 ns.…”
Section: Methodsmentioning
confidence: 99%
“…A 2-fs time step was used for the first 250 ns, after which hydrogen mass repartitioning (HMR) was employed to reach a time step of 4 fs for the remainder of the simulations. HMR has recently been demonsrated to be applicable to membrane-protein systems with little to no effect on dynamics 55 . For the steered MD simulation, a murine IgG1 antibody (taken from PDB 1IGY) was added to the STm-B system and pulled towards the OmpD loops at 1.0 Å/ns for 70 ns.…”
Section: Methodsmentioning
confidence: 99%
“…Hopkins et al tested HMR on various benchmark systems, ranging from 3-residue peptide to 129-residue protein, hen egg white lysozyme (HEWL), and concluded there is no significant difference in kinetics and thermodynamics when HMR is used [ 30 ]. Balusek et al assessed the validity of HMR for the membrane simulation, and figured out most structural properties (area-per-lipid, electron density profile, order parameters) being identical, but some kinetic properties such as diffusion constant showed some differences [ 31 ].…”
Section: Computational Methods For the Conformational Study Of Promentioning
confidence: 99%
“…An in-house Python script was used to implement the hydrogen mass repartitioning approach (41) to remove the fastest degrees of freedom in the system, allowing the use of time steps up to 4 fs in the MD simulations. The hydrogen mass was increased by a factor of four, from 1.008 u to 4.0320 u.…”
Section: Membrane Modelling and Simulation Set-upmentioning
confidence: 99%
“…The hydrogen mass was increased by a factor of four, from 1.008 u to 4.0320 u. This approach has been tested in simulations of a variety of membranes, showing practically no differences in their structural properties when compared to non-heavy hydrogen simulations (41). At least three independent replicates were collected for each system (Table 1), using different initial random seeds for the simulation (42,43).…”
Section: Membrane Modelling and Simulation Set-upmentioning
confidence: 99%