An accurate and genome-wide characterization of protein–DNA interactions such as transcription factor binding is of utmost importance for modern biology. Powerful screening methods emerged. But the vast majority of these techniques depend on special labels or markers against the ligand of interest and moreover most of them are not suitable for detecting low-affinity binders. In this article a molecular force assay is described based on measuring comparative unbinding forces of biomolecules for the detection of protein–DNA interactions. The measurement of binding or unbinding forces has several unique advantages in biological applications since the interaction between certain molecules and not the mere presence of one of them is detected. No...
Ros R, Eckel R, Bartels FW, et al. Single molecule force spectroscopy on ligand-DNA complexes: from ...
AbstractWe present unzipping force analysis of protein association (UFAPA) as a novel and versatile ...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
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 ...
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 ...
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 ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
ABSTRACT We present unzipping force analysis of protein association (UFAPA) as a novel and versatile...
Ros R, Eckel R, Bartels FW, et al. Single molecule force spectroscopy on ligand-DNA complexes: from ...
AbstractWe present unzipping force analysis of protein association (UFAPA) as a novel and versatile ...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
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 ...
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 ...
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 ...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
ABSTRACT We present unzipping force analysis of protein association (UFAPA) as a novel and versatile...
Ros R, Eckel R, Bartels FW, et al. Single molecule force spectroscopy on ligand-DNA complexes: from ...
AbstractWe present unzipping force analysis of protein association (UFAPA) as a novel and versatile ...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...