Literature DB >> 17300191

Coupling of replica exchange simulations to a non-Boltzmann structure reservoir.

Adrian E Roitberg1, Asim Okur, Carlos Simmerling.   

Abstract

Computing converged ensemble properties remains challenging for large biomolecules. Replica exchange molecular dynamics (REMD) can significantly increase the efficiency of conformational sampling by using high temperatures to escape kinetic traps. Several groups, including ours, introduced the idea of coupling replica exchange to a pre-converged, Boltzmann-populated reservoir, usually at a temperature higher than that of the highest temperature replica. This procedure reduces computational cost because the long simulation times needed for extensive sampling are only carried out for a single temperature. However, a weakness of the approach is that the Boltzmann-weighted reservoir can still be difficult to generate. We now present the idea of employing a non-Boltzmann reservoir, whose structures can be generated through more efficient conformational sampling methods. We demonstrate that the approach is rigorous and derive a correct statistical mechanical exchange criterion between the reservoir and the replicas that drives Boltzmann-weighted probabilities for the replicas. We test this approach on the trpzip2 peptide and demonstrate that the resulting thermal stability profile is essentially indistinguishable from that obtained using very long (>100 ns) standard REMD simulations. The convergence of this reservoir-aided REMD is significantly faster than for regular REMD. Furthermore, we demonstrate that modification of the exchange criterion is essential; REMD simulations using a standard exchange function with the non-Boltzmann reservoir produced incorrect results.

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Year:  2007        PMID: 17300191      PMCID: PMC4819981          DOI: 10.1021/jp068335b

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  19 in total

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8.  The unfolded state of the villin headpiece helical subdomain: computational studies of the role of locally stabilized structure.

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10.  Improved Efficiency of Replica Exchange Simulations through Use of a Hybrid Explicit/Implicit Solvation Model.

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  28 in total

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6.  Adaptive conformational sampling based on replicas.

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8.  Speed of conformational change: comparing explicit and implicit solvent molecular dynamics simulations.

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Review 10.  Folding mechanism of β-hairpin trpzip2: heterogeneity, transition state and folding pathways.

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