Fluorescent proteins (FPs) are widely used in many organisms, but are commonly characterised in vitro. However, the in vitro properties may poorly reflect in vivo performance. Therefore, we characterised 27 FPs in vivo using Saccharomyces cerevisiae as model organism. We linked the FPs via a T2A peptide to a control FP, producing equimolar expression of the 2 FPs from 1 plasmid. Using this strategy, we characterised the FPs for brightness, photostability, photochromicity and pH-sensitivity, achieving a comprehensive in vivo characterisation. Many FPs showed different in vivo properties compared to existing in vitro data. Additionally, various FPs were photochromic, which affects readouts due to complex bleaching kinetics. Finally, we codon ...
Fluorescent proteins with varying colors are indispensable tools for the life sciences research comm...
Budding yeast (Saccharomyces cerevisiae) has been widely used as a model system to study fundamental...
While there have been many advances in fluorescence microscopy for single molecules in recent years,...
Fluorescent proteins (FPs) are widely used in many organisms, but are commonly characterised in vitr...
Fluorescent protein (FP) maturation can limit the accuracy with which dynamic intracellular processe...
Raw results of data of the paper 'In vivo characterisation of fluorescent proteins in budding yeast'...
Fluorescent protein fusions are a powerful tool to monitor the localization and trafficking of prote...
Fluorescent protein fusions are a powerful tool to monitor the localization and trafficking of prote...
Development of genetically modified microorganisms such as Saccharomyces cerevisiae for use as micro...
Saccharomyces cerevisiae are widely used for imaging fluorescently tagged protein fusions. Fluoresce...
Saccharomyces cerevisiae are widely used for imaging fluorescently tagged protein fusions. Fluoresce...
For the investigation of protein localization and trafficking using live cell imaging, researchers o...
Fluorescent protein tags are fundamental tools used to visualize gene products and analyze their dyn...
<p>Recommended fluorescent protein combinations for imaging in yeast are broken down by filter set (...
Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different color...
Fluorescent proteins with varying colors are indispensable tools for the life sciences research comm...
Budding yeast (Saccharomyces cerevisiae) has been widely used as a model system to study fundamental...
While there have been many advances in fluorescence microscopy for single molecules in recent years,...
Fluorescent proteins (FPs) are widely used in many organisms, but are commonly characterised in vitr...
Fluorescent protein (FP) maturation can limit the accuracy with which dynamic intracellular processe...
Raw results of data of the paper 'In vivo characterisation of fluorescent proteins in budding yeast'...
Fluorescent protein fusions are a powerful tool to monitor the localization and trafficking of prote...
Fluorescent protein fusions are a powerful tool to monitor the localization and trafficking of prote...
Development of genetically modified microorganisms such as Saccharomyces cerevisiae for use as micro...
Saccharomyces cerevisiae are widely used for imaging fluorescently tagged protein fusions. Fluoresce...
Saccharomyces cerevisiae are widely used for imaging fluorescently tagged protein fusions. Fluoresce...
For the investigation of protein localization and trafficking using live cell imaging, researchers o...
Fluorescent protein tags are fundamental tools used to visualize gene products and analyze their dyn...
<p>Recommended fluorescent protein combinations for imaging in yeast are broken down by filter set (...
Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different color...
Fluorescent proteins with varying colors are indispensable tools for the life sciences research comm...
Budding yeast (Saccharomyces cerevisiae) has been widely used as a model system to study fundamental...
While there have been many advances in fluorescence microscopy for single molecules in recent years,...