AbstractBiological organisms exist over a broad temperature range of −15°C to +120°C, where many molecular processes involving DNA depend on the nanoscale properties of the double helix. Here, we present results of extensive molecular dynamics simulations of DNA oligomers at different temperatures. We show that internal basepair conformations are strongly temperature-dependent, particularly in the stretch and opening degrees of freedom whose harmonic fluctuations can be considered the initial steps of the DNA melting pathway. The basepair step elasticity contains a weaker, but detectable, entropic contribution in the roll, tilt, and rise degrees of freedom. To extend the validity of our results to the temperature interval beyond the standar...
In this letter, we report direct measurement of large low frequency temperature fluctuations in doub...
Bending of the seemingly stiff DNA double helix is a fundamental physical process for any living org...
AbstractRecent measurements of the distribution of end-to-end distance in short DNA molecules infer ...
The three-dimensional structure of DNA contains various sequence-dependent structural information, w...
DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quan...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
AbstractIn this paper, we consider the implications of the general theory developed in the accompany...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
ABSTRACT When a single molecule of double-stranded DNA is stretched beyond its B-form contour length...
DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quan...
AbstractWhen a single molecule of double-stranded DNA is stretched beyond its B-form contour length,...
Double stranded DNA chain is known to have non-trivial elasticity. We study the effect of this elast...
AbstractThis article presents a general statistical mechanical approach to describe self-folding tog...
The helical structure of double-stranded DNA is destabilized by increasing temperature. Above a crit...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
In this letter, we report direct measurement of large low frequency temperature fluctuations in doub...
Bending of the seemingly stiff DNA double helix is a fundamental physical process for any living org...
AbstractRecent measurements of the distribution of end-to-end distance in short DNA molecules infer ...
The three-dimensional structure of DNA contains various sequence-dependent structural information, w...
DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quan...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
AbstractIn this paper, we consider the implications of the general theory developed in the accompany...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
ABSTRACT When a single molecule of double-stranded DNA is stretched beyond its B-form contour length...
DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quan...
AbstractWhen a single molecule of double-stranded DNA is stretched beyond its B-form contour length,...
Double stranded DNA chain is known to have non-trivial elasticity. We study the effect of this elast...
AbstractThis article presents a general statistical mechanical approach to describe self-folding tog...
The helical structure of double-stranded DNA is destabilized by increasing temperature. Above a crit...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
In this letter, we report direct measurement of large low frequency temperature fluctuations in doub...
Bending of the seemingly stiff DNA double helix is a fundamental physical process for any living org...
AbstractRecent measurements of the distribution of end-to-end distance in short DNA molecules infer ...