An implicit divalent counterion force field for RNA molecular dynamics
被引:7
作者:
Henke, Paul S.
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Univ So Calif, Dept Chem, Los Angeles, CA 90089 USAUniv So Calif, Dept Chem, Los Angeles, CA 90089 USA
Henke, Paul S.
[1
]
Mak, Chi H.
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Univ So Calif, Dept Chem, Los Angeles, CA 90089 USA
Univ So Calif, Ctr Appl Math Sci, Los Angeles, CA 90089 USAUniv So Calif, Dept Chem, Los Angeles, CA 90089 USA
Mak, Chi H.
[1
,2
]
机构:
[1] Univ So Calif, Dept Chem, Los Angeles, CA 90089 USA
[2] Univ So Calif, Ctr Appl Math Sci, Los Angeles, CA 90089 USA
How to properly account for polyvalent counterions in a molecular dynamics simulation of polyelectrolytes such as nucleic acids remains an open question. Not only do counterions such as Mg2+ screen electrostatic interactions, they also produce attractive intrachain interactions that stabilize secondary and tertiary structures. Here, we show how a simple force field derived from a recently reported implicit counterion model can be integrated into a molecular dynamics simulation for RNAs to realistically reproduce key structural details of both single-stranded and base-paired RNA constructs. This divalent counterion model is computationally efficient. It works with existing atomistic force fields, or coarse-grained models may be tuned to work with it. We provide optimized parameters for a coarse-grained RNA model that takes advantage of this new counterion force field. Using the new model, we illustrate how the structural flexibility of RNA two-way junctions is modified under different salt conditions. (C) 2016 AIP Publishing LLC.
机构:
Univ Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USAUniv Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USA
Das, Rhiju
Baker, David
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Univ Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USAUniv Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USA
机构:
Univ Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USAUniv Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USA
Das, Rhiju
Baker, David
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Univ Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USAUniv Washington, Howard Hughes Med Inst, Dept Biochem, Seattle, WA 98195 USA