Differential Deformability of the DNA Minor Groove and Altered BI/BII Backbone Conformational Equilibrium by the Monovalent Ions Li(+), Na(+), K(+), and Rb(+) via Water-Mediated Hydrogen Bonding.
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An Empirical Polarizable Force Field Based on the Classical Drude Oscillator Model: Development History and Recent ApplicationsDoes Cation Size Affect Occupancy and Electrostatic Screening of the Nucleic Acid Ion Atmosphere?Ion-induced alterations of the local hydration environment elucidate Hofmeister effect in a simple classical model of Trp-cage miniprotein.The hydration structure of the heavy-alkalines Rb+ and Cs+ through molecular dynamics and X-ray absorption spectroscopy: surface clusters and eccentricity.Polarizable Force Field for DNA Based on the Classical Drude Oscillator: I. Refinement Using Quantum Mechanical Base Stacking and Conformational Energetics.Polarizable Force Field for DNA Based on the Classical Drude Oscillator: II. Microsecond Molecular Dynamics Simulations of Duplex DNA.
P2860
Differential Deformability of the DNA Minor Groove and Altered BI/BII Backbone Conformational Equilibrium by the Monovalent Ions Li(+), Na(+), K(+), and Rb(+) via Water-Mediated Hydrogen Bonding.
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name
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@en
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@nl
type
label
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@en
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@nl
prefLabel
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@en
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@nl
P2860
P356
P1476
Differential Deformability of ...... ter-Mediated Hydrogen Bonding.
@en
P2093
Alexey Savelyev
P2860
P304
P356
10.1021/ACS.JCTC.5B00508
P577
2015-08-26T00:00:00Z