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Replica sub-permutation method for molecular dynamics and monte carlo simulations.

Masataka YamauchiHisashi Okumura
Published in: Journal of computational chemistry (2019)
We propose an improvement of the replica-exchange and replica-permutation methods, which we call the replica sub-permutation method (RSPM). Instead of considering all permutations, this method uses a new algorithm referred to as sub-permutation to perform parameter transition. The RSPM succeeds in reducing the number of combinations between replicas and parameters without the loss of sampling efficiency. For comparison, we applied the replica sub-permutation, replica-permutation, and replica-exchange methods to a β-hairpin mini protein, chignolin, in explicit water. We calculated the transition ratio and number of tunneling events in the parameter space, the number of folding-unfolding events, the autocorrelation function, and the autocorrelation time as measures of sampling efficiency. The results indicate that among the three methods, the proposed RSPM is the most efficient in both parameter and conformational spaces. © 2019 Wiley Periodicals, Inc.
Keyphrases
  • molecular dynamics
  • density functional theory
  • molecular dynamics simulations
  • monte carlo
  • small molecule
  • single molecule
  • binding protein
  • protein protein