Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A characterization of protein complexes based on binding forces offers an unparalleled dynamic range and allows for the effective discrimination of non-specific interactions. Here we present a DNA-based Molecular Force Assay to quantify protein-protein interactions, namely the bond between different variants of GFP and GFP-binding nanobodies. We present different strategies to adjust the maximum sensitivity window of the assay by influencing the binding strength of the DNA reference duplexes. The binding of the nanobody Enhancer to the different GFP constructs is compared at high sensitivity of the assay. Whereas the binding strength to wild type a...
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...
Analysis of transcription factor binding to DNA sequences is of utmost importance to understand the ...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
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 ...
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 ...
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 ...
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 ...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
Quantitative proteome research is greatly promoted by high-resolution parallel format assays. A char...
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 ...
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 ...
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 ...
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 ...