The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local DNA template access, and through continuous dynamic rearrangements, regulates genome function [1]. However, given that nucleosome packaging occurs on a spatial scale well below the diffraction limit, real time observation of chromatin structure in live cells by optical microscopy has proved technically difficult, despite recent advances in live cell super resolution imaging [2]. One alternative solution to quantify chromatin structure in a living cell at the level of nucleosome proximity is to measure and spatially map Förster resonance energy transfer (FRET) between fluorescently labelled histones - the core protein of a nucleosome [3]. In re...
In recent years several approaches have been developed to address the chromatin status and its chang...
AbstractQuantitative analysis in Förster resonance energy transfer (FRET) experiments in live cells ...
How metazoan genomes are structured at the nanoscale in living cells and tissues remains unknown. He...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
A DNA double-strand break (DSB) takes place in the context of chromatin, and there is increasing evi...
To investigate how chromatin architecture is spatiotemporally organized at a double-strand break (DS...
To investigate how chromatin architecture is spatiotemporally organized at a double-strand break (DS...
To investigate how chromatin architecture is spatiotemporally organized at a double-strand break (DS...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
@Chromatin nanoscale architecture in live cells can be studied by Förster resonance energy transfer ...
Changes in chromatin structure are key determinants of genomic responses. Thus, methods that enable ...
International audienceQuantitative analysis in F?er Resonance Energy Transfer (FRET) experiments in ...
In recent years several approaches have been developed to address the chromatin status and its chang...
AbstractQuantitative analysis in Förster resonance energy transfer (FRET) experiments in live cells ...
How metazoan genomes are structured at the nanoscale in living cells and tissues remains unknown. He...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
A DNA double-strand break (DSB) takes place in the context of chromatin, and there is increasing evi...
To investigate how chromatin architecture is spatiotemporally organized at a double-strand break (DS...
To investigate how chromatin architecture is spatiotemporally organized at a double-strand break (DS...
To investigate how chromatin architecture is spatiotemporally organized at a double-strand break (DS...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
@Chromatin nanoscale architecture in live cells can be studied by Förster resonance energy transfer ...
Changes in chromatin structure are key determinants of genomic responses. Thus, methods that enable ...
International audienceQuantitative analysis in F?er Resonance Energy Transfer (FRET) experiments in ...
In recent years several approaches have been developed to address the chromatin status and its chang...
AbstractQuantitative analysis in Förster resonance energy transfer (FRET) experiments in live cells ...
How metazoan genomes are structured at the nanoscale in living cells and tissues remains unknown. He...