DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quantitative understanding and optimization of its functions requires precise experimental characterization and accurate modeling of DNA properties. A defining feature of DNA is its helicity. DNA unwinds with increasing temperature, even for temperatures well below the melting temperature. However, accurate quanti-tation of DNA unwinding under external forces and a microscopic understanding of the corresponding structural changes are currently lacking. Here we combine single-molecule magnetic tweezers measurements with atomistic molecular dynamics and coarse-grained simulations to obtain a comprehensive view of the temperature dependence of DNA t...
AbstractWhen a single molecule of double-stranded DNA is stretched beyond its B-form contour length,...
ABSTRACT When a single molecule of double-stranded DNA is stretched beyond its B-form contour length...
Recent magnetic tweezers experiments have reported systematic deviations of the twist response of do...
DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quan...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
The helical structure of double-stranded DNA is destabilized by increasing temperature. Above a crit...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
DNA unwinding plays a major role in many biological processes, such as replication, transcription, a...
AbstractBiological organisms exist over a broad temperature range of −15°C to +120°C, where many mol...
DNA unwinding is an important process that controls binding of proteins, gene expression and melting...
AbstractIn this paper, we consider the implications of the general theory developed in the accompany...
When pulled along the axis, double-strand DNA undergoes a large conformational change and elongates ...
We use an elastic rod model with contact to study the extension versus rotation diagrams of single s...
The opening of DNA double strands is extremely relevant to several biological functions, such as rep...
The microscopic flexibility of DNA is a key ingredient for understanding its interaction with protei...
AbstractWhen a single molecule of double-stranded DNA is stretched beyond its B-form contour length,...
ABSTRACT When a single molecule of double-stranded DNA is stretched beyond its B-form contour length...
Recent magnetic tweezers experiments have reported systematic deviations of the twist response of do...
DNA is the carrier of all cellular genetic information and increasingly used in nanotechnology. Quan...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
The helical structure of double-stranded DNA is destabilized by increasing temperature. Above a crit...
Helical molecules change their twist number under the effect of a mechanical load. We study the twis...
DNA unwinding plays a major role in many biological processes, such as replication, transcription, a...
AbstractBiological organisms exist over a broad temperature range of −15°C to +120°C, where many mol...
DNA unwinding is an important process that controls binding of proteins, gene expression and melting...
AbstractIn this paper, we consider the implications of the general theory developed in the accompany...
When pulled along the axis, double-strand DNA undergoes a large conformational change and elongates ...
We use an elastic rod model with contact to study the extension versus rotation diagrams of single s...
The opening of DNA double strands is extremely relevant to several biological functions, such as rep...
The microscopic flexibility of DNA is a key ingredient for understanding its interaction with protei...
AbstractWhen a single molecule of double-stranded DNA is stretched beyond its B-form contour length,...
ABSTRACT When a single molecule of double-stranded DNA is stretched beyond its B-form contour length...
Recent magnetic tweezers experiments have reported systematic deviations of the twist response of do...