We developed in situ single cell pull-down (SiCPull) of GFP-tagged protein complexes based on micropatterned functionalized surface architectures. Cells cultured on these supports are lysed by mild detergents and protein complexes captured to the surface are probed in situ by total internal reflection fluorescence microscopy. Using SiCPull, we quantitatively mapped the lifetimes of various signal transducer and activator of transcription complexes by monitoring dissociation from the surface and defined their stoichiometry on the single molecule level
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
The advent of single molecule fluorescence microscopy has allowed experimental molecular biophysics ...
AbstractVisualization and tracking of single fluorescent molecules is a recent development in optica...
We developed in situ single cell pull-down (SiCPull) of GFP-tagged protein complexes based on microp...
We report here an image-based method to quantify the stoichiometry of diffraction-limited sub-cellul...
AbstractWe report here an image-based method to quantify the stoichiometry of diffraction-limited su...
Cellular processes result from dynamic interactions between biomolecules. The gold standard method f...
We report a general method based on wide-field fluorescence imaging of single molecule photobleachin...
Proteins perform most cellular functions in macromolecular complexes. The same protein often partici...
We describe a method to detect molecular complexes and measure their stoichiometry in living cells f...
We have designed and developed a novel form of biosensor with implications to both the understanding...
We applied single-molecule fluorescence (SMF) methods to probe the properties of individual fluoresc...
Proteins perform most cellular functions in macromolecular complexes. The same protein often partici...
Progressive, technological achievements in the quantitative fluorescence microscopy field are allowi...
International audienceDetermination of protein stoichiometry in living cells is key to understanding...
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
The advent of single molecule fluorescence microscopy has allowed experimental molecular biophysics ...
AbstractVisualization and tracking of single fluorescent molecules is a recent development in optica...
We developed in situ single cell pull-down (SiCPull) of GFP-tagged protein complexes based on microp...
We report here an image-based method to quantify the stoichiometry of diffraction-limited sub-cellul...
AbstractWe report here an image-based method to quantify the stoichiometry of diffraction-limited su...
Cellular processes result from dynamic interactions between biomolecules. The gold standard method f...
We report a general method based on wide-field fluorescence imaging of single molecule photobleachin...
Proteins perform most cellular functions in macromolecular complexes. The same protein often partici...
We describe a method to detect molecular complexes and measure their stoichiometry in living cells f...
We have designed and developed a novel form of biosensor with implications to both the understanding...
We applied single-molecule fluorescence (SMF) methods to probe the properties of individual fluoresc...
Proteins perform most cellular functions in macromolecular complexes. The same protein often partici...
Progressive, technological achievements in the quantitative fluorescence microscopy field are allowi...
International audienceDetermination of protein stoichiometry in living cells is key to understanding...
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
The advent of single molecule fluorescence microscopy has allowed experimental molecular biophysics ...
AbstractVisualization and tracking of single fluorescent molecules is a recent development in optica...