The utility of blue fluorescent protein (BFP) has been limited by its low quantum yield and rapid photobleaching. A library targeting residues neighboring the chromophore yielded a variant with enhanced quantum yield (0.55 versus 0.34), reduced pH sensitivity and a 40-fold increase in photobleaching half-life. This BFP, named Azurite, is well expressed in bacterial and mammalian cells and extends the palette of fluorescent proteins that can be used for imaging
Use of fluorescent proteins to study in vivo processes in mammals requires near-infrared (NIR) bioma...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) are of g...
The utility of blue fluorescent protein (BFP) has been limited by its low quantum yield and rapid ph...
Blue fluorescent proteins (BFPs) offer visualization of protein location and behavior, but often suf...
Commonly used monomeric blue fluorescent proteins suffer from moderate brightness. The brightest of ...
We used a red chromophore formation pathway, in which the anionic red chromophore is formed from the...
SummaryWe used a red chromophore formation pathway, in which the anionic red chromophore is formed f...
Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different color...
Fluorescent proteins (FPs) are indispensable markers for two-photon imaging of live tissue, especial...
Near-infrared fluorescent proteins are in high demand for in vivo imaging. We developed four spectra...
Fluorescent proteins (FPs) are indispensable markers for two-photon imaging of live tissue, especial...
A synthesized blue fluorescent protein (BFP) chromophore analogue 2-BFP ((4Z)-4-[(1H-imidazol-2-yl)m...
Fluorescent proteins (FPs) have revolutionized our ability to image biological systems. However, poo...
We have investigated properties relevant to quantitative imaging in living cells of five green fluor...
Use of fluorescent proteins to study in vivo processes in mammals requires near-infrared (NIR) bioma...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) are of g...
The utility of blue fluorescent protein (BFP) has been limited by its low quantum yield and rapid ph...
Blue fluorescent proteins (BFPs) offer visualization of protein location and behavior, but often suf...
Commonly used monomeric blue fluorescent proteins suffer from moderate brightness. The brightest of ...
We used a red chromophore formation pathway, in which the anionic red chromophore is formed from the...
SummaryWe used a red chromophore formation pathway, in which the anionic red chromophore is formed f...
Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different color...
Fluorescent proteins (FPs) are indispensable markers for two-photon imaging of live tissue, especial...
Near-infrared fluorescent proteins are in high demand for in vivo imaging. We developed four spectra...
Fluorescent proteins (FPs) are indispensable markers for two-photon imaging of live tissue, especial...
A synthesized blue fluorescent protein (BFP) chromophore analogue 2-BFP ((4Z)-4-[(1H-imidazol-2-yl)m...
Fluorescent proteins (FPs) have revolutionized our ability to image biological systems. However, poo...
We have investigated properties relevant to quantitative imaging in living cells of five green fluor...
Use of fluorescent proteins to study in vivo processes in mammals requires near-infrared (NIR) bioma...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Near-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) are of g...