Unzipping force analysis of protein association is a technique to investigate protein-DNA interactions by mechanically unzipping DNA. We computationally investigate the limits of this technique under quasistatic conditions. We find the minimum binding energy of a protein for which the protein can be detected using this technique and the minimum distance between the binding sites of two proteins of varying binding energies that can be resolved unambiguously with this technique
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Nanoscale manipulation of individual biomolecules, using such techniques as the atomic force microsc...
Unzipping force analysis of protein association is a technique to investigate protein-DNA interactio...
AbstractWe present unzipping force analysis of protein association (UFAPA) as a novel and versatile ...
ABSTRACT We present unzipping force analysis of protein association (UFAPA) as a novel and versatile...
AbstractRecent experimental advances allow the direct measurement of the force/extension behavior fo...
Determining numbers of proteins bound to large DNAs is important for understanding their chromosomal...
Determining numbers of proteins bound to large DNAs is important for understanding their chromo-soma...
Recent experimental advances allow the direct measurement of the force/extension behavior for DNA in...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
We theoretically analyze the force signal expected during unzipping through a single double-stranded...
The unzipping transition under the influence of external force of a dsDNA molecule has been studied ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Nanoscale manipulation of individual biomolecules, using such techniques as the atomic force microsc...
Unzipping force analysis of protein association is a technique to investigate protein-DNA interactio...
AbstractWe present unzipping force analysis of protein association (UFAPA) as a novel and versatile ...
ABSTRACT We present unzipping force analysis of protein association (UFAPA) as a novel and versatile...
AbstractRecent experimental advances allow the direct measurement of the force/extension behavior fo...
Determining numbers of proteins bound to large DNAs is important for understanding their chromosomal...
Determining numbers of proteins bound to large DNAs is important for understanding their chromo-soma...
Recent experimental advances allow the direct measurement of the force/extension behavior for DNA in...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
We theoretically analyze the force signal expected during unzipping through a single double-stranded...
The unzipping transition under the influence of external force of a dsDNA molecule has been studied ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Nanoscale manipulation of individual biomolecules, using such techniques as the atomic force microsc...