AbstractFluorescence and force-based single-molecule studies of protein–nucleic acid interactions continue to shed critical insights into many aspects of DNA and RNA processing. As single-molecule assays are inherently low-throughput, obtaining statistically relevant datasets remains a major challenge. Additionally, most fluorescence-based single-molecule particle-tracking assays are limited to observing fluorescent proteins that are in the low-nanomolar range, as spurious background signals predominate at higher fluorophore concentrations. These technical limitations have traditionally limited the types of questions that could be addressed via single-molecule methods. In this review, we describe new approaches for high-throughput and high-...
This work is focused on the development of new microscopy-based analysis methods with single-entity ...
Protein-DNA interactions are the core of the cell’s molecular machinery. For a long time, convention...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
AbstractFluorescence and force-based single-molecule studies of protein–nucleic acid interactions co...
AbstractIn vivo single-molecule experiments offer new perspectives on the behaviour of DNA binding p...
Fluorescence spectroscopy and fluorescence microscopy carried out on the single molecule level are e...
Single molecule fluorescence imaging techniques have revolutionized the way we study biology by offe...
AbstractQuantitative modeling of intracellular processes often requires information about intracellu...
Single-molecule fluorescence techniques have emerged as powerful tools to study biological processes...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
Single molecule fluorescent techniques have become standard approaches to study protein-DNA interact...
The complex binding dynamics between DNA and proteins are often obscured by ensemble averaging effec...
Over the past decade, major breakthroughs were led in molecular biology with techniques allowing the...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Single-molecule manipulation and imaging techniques have become important elements of the biologist'...
This work is focused on the development of new microscopy-based analysis methods with single-entity ...
Protein-DNA interactions are the core of the cell’s molecular machinery. For a long time, convention...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...
AbstractFluorescence and force-based single-molecule studies of protein–nucleic acid interactions co...
AbstractIn vivo single-molecule experiments offer new perspectives on the behaviour of DNA binding p...
Fluorescence spectroscopy and fluorescence microscopy carried out on the single molecule level are e...
Single molecule fluorescence imaging techniques have revolutionized the way we study biology by offe...
AbstractQuantitative modeling of intracellular processes often requires information about intracellu...
Single-molecule fluorescence techniques have emerged as powerful tools to study biological processes...
The single-molecule approach seeks to understand molecular mechanisms by observing biomolecular proc...
Single molecule fluorescent techniques have become standard approaches to study protein-DNA interact...
The complex binding dynamics between DNA and proteins are often obscured by ensemble averaging effec...
Over the past decade, major breakthroughs were led in molecular biology with techniques allowing the...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Single-molecule manipulation and imaging techniques have become important elements of the biologist'...
This work is focused on the development of new microscopy-based analysis methods with single-entity ...
Protein-DNA interactions are the core of the cell’s molecular machinery. For a long time, convention...
An accurate and genome-wide characterization of protein–DNA interactions such as transcription facto...