Directly measured forces between DNA helices in ordered arrays have been reduced to simple force coefficients and mathematical expressions for the interactions between pairs of molecules. The tabulated force parameters and mathematical expressions can be applied to parallel molecules or, by transformation, to skewed molecules of variable separation and mutual angle. This "toolbox" of intermolecular forces is intended for use in modelling molecular interactions, assembly, and conformation. The coefficients characterizing both the exponential hydration and the electrostatic interactions depend strongly on the univalent counterion species in solution, but are only weakly sensitive to anion type and temperature (from 5 to 50 degrees C). Interac...
One of the fundamental problems in nucleic acids biophysics is to predict the different forces that ...
DNA molecules in the familiar double helical B form are treated here as though they have rod-like st...
Quantitative understanding of biomolecular electrostatics, particularly involving multivalent ions a...
Directly measured forces between DNA helices in ordered arrays have been reduced to simple force coe...
Rather than acting by modifying van der Waals or electrostatic double layer interactions or by direc...
AbstractBy combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sepa...
ABSTRACT By combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sep...
We have performed two molecular dynamics computer simulations of two 10-base-pair segments of DNA mo...
AbstractThe physical forces that underlie the exclusion of solutes from macromolecular surfaces can ...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
Quantifying the basic intra- and inter-molecular forces of DNA has helped us to better understand an...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
The assembly of double stranded DNA helices with divalent manganese ion is favored by increasing tem...
AbstractUnderstanding the strength and specificity of interactions among biologically important macr...
One of the fundamental problems in nucleic acids biophysics is to predict the different forces that ...
DNA molecules in the familiar double helical B form are treated here as though they have rod-like st...
Quantitative understanding of biomolecular electrostatics, particularly involving multivalent ions a...
Directly measured forces between DNA helices in ordered arrays have been reduced to simple force coe...
Rather than acting by modifying van der Waals or electrostatic double layer interactions or by direc...
AbstractBy combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sepa...
ABSTRACT By combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sep...
We have performed two molecular dynamics computer simulations of two 10-base-pair segments of DNA mo...
AbstractThe physical forces that underlie the exclusion of solutes from macromolecular surfaces can ...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
Quantifying the basic intra- and inter-molecular forces of DNA has helped us to better understand an...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
The assembly of double stranded DNA helices with divalent manganese ion is favored by increasing tem...
AbstractUnderstanding the strength and specificity of interactions among biologically important macr...
One of the fundamental problems in nucleic acids biophysics is to predict the different forces that ...
DNA molecules in the familiar double helical B form are treated here as though they have rod-like st...
Quantitative understanding of biomolecular electrostatics, particularly involving multivalent ions a...