A DNA double-strand break (DSB) takes place in the context of chromatin, and there is increasing evidence for chromatin structure to play a functional role in DSB signaling and repair. Thus, there is an emerging need for quantitative microscopy methods that can directly measure chromatin network architecture and detect changes in this structural framework upon DSB induction within an intact nucleus. To address this demand, here we present the phasor approach to fluorescence lifetime imaging microscopy (FLIM) of Förster resonance energy transfer (FRET) between fluorescently labeled histones in the DSB inducible via AsiSI cell system (DIvA), which has sufficient spatial resolution to map nuclear-wide chromatin compaction at the level of nucle...
In recent years several approaches have been developed to address the chromatin status and its chang...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
Abstract Eukaryotic DNA is packed with histone and non-histone proteins into chromatin fibers. The ...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
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...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
Changes in chromatin structure are key determinants of genomic responses. Thus, methods that enable ...
@Chromatin nanoscale architecture in live cells can be studied by Förster resonance energy transfer ...
How metazoan genomes are structured at the nanoscale in living cells and tissues remains unknown. He...
<div><p>The linear sequence of DNA encodes access to the complete set of proteins that carry out cel...
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...
In recent years several approaches have been developed to address the chromatin status and its chang...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
Abstract Eukaryotic DNA is packed with histone and non-histone proteins into chromatin fibers. The ...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
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...
The nanometer spacing between nucleosomes throughout global chromatin organisation modulates local D...
Changes in chromatin structure are key determinants of genomic responses. Thus, methods that enable ...
@Chromatin nanoscale architecture in live cells can be studied by Förster resonance energy transfer ...
How metazoan genomes are structured at the nanoscale in living cells and tissues remains unknown. He...
<div><p>The linear sequence of DNA encodes access to the complete set of proteins that carry out cel...
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...
In recent years several approaches have been developed to address the chromatin status and its chang...
We present a quantitative Forster resonance energy transfer (FRET)-based assay using multiphoton flu...
Abstract Eukaryotic DNA is packed with histone and non-histone proteins into chromatin fibers. The ...