AbstractBackground: Specific interactions between complementary strands of DNA and other molecules are central to the storage, retrieval and modification of information in biological systems. Although in many cases the basic structures of duplex DNA and the binding energetics have been well characterized, little information is available about the forces in these systems. These forces are of critical importance because they must be overcome, for example, by protein machines during transcription and repair. Recent developments in atomic force microscopy make possible direct measurements of such forces between the individual oligonucleotide strands that form DNA duplexes.Results: We used the chemical force microscopy technique, in which oligon...
Anselmetti D, Fritz J, Smith B, Fernandez-Busquets X. Single molecule DNA biophysics with atomic for...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...
AbstractBackground: Specific interactions between complementary strands of DNA and other molecules a...
As one of the most crucial properties of DNA, the structural stability and the mechanical strength a...
The force-driven separation of double-stranded DNA is crucial to the accomplishment of cellular pro-...
The specific binding between the two DNA strands in a double helix is one of the most fundamental an...
Atomic force microscopy (AFM) has proven to be a powerful tool for the study of DNA-protein interact...
The interplay between the mechanical properties of double-stranded and single-stranded DNA is a phen...
<p>Nucleic acids are subjected to many different mechanical loadings inside. These loadings could ...
In this work, we have measured, by means of optical tweezers, forces acting on depletion-induced DNA...
Atomic force microscope (AFM), as its high resolution and precision, was employed to directly probe ...
During pulling experiments or structural tasks in living and artificial environments, double-strande...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
AbstractDNA is partly denatured in vitro by applying a force that mechanically separates the two str...
Anselmetti D, Fritz J, Smith B, Fernandez-Busquets X. Single molecule DNA biophysics with atomic for...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...
AbstractBackground: Specific interactions between complementary strands of DNA and other molecules a...
As one of the most crucial properties of DNA, the structural stability and the mechanical strength a...
The force-driven separation of double-stranded DNA is crucial to the accomplishment of cellular pro-...
The specific binding between the two DNA strands in a double helix is one of the most fundamental an...
Atomic force microscopy (AFM) has proven to be a powerful tool for the study of DNA-protein interact...
The interplay between the mechanical properties of double-stranded and single-stranded DNA is a phen...
<p>Nucleic acids are subjected to many different mechanical loadings inside. These loadings could ...
In this work, we have measured, by means of optical tweezers, forces acting on depletion-induced DNA...
Atomic force microscope (AFM), as its high resolution and precision, was employed to directly probe ...
During pulling experiments or structural tasks in living and artificial environments, double-strande...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
AbstractDNA is partly denatured in vitro by applying a force that mechanically separates the two str...
Anselmetti D, Fritz J, Smith B, Fernandez-Busquets X. Single molecule DNA biophysics with atomic for...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...