AbstractThe mechanism of the chromophore maturation in members of the green fluorescent protein (GFP) family such as DsRed and other red fluorescent and chromoproteins was analyzed. The analysis indicates that the red chromophore results from a chemical transformation of the protonated form of the GFP-like chromophore, not from the anionic form, which appears to be a dead-end product. The data suggest a rational strategy to achieve the complete red chromophore maturation utilizing substitutions to favor the formation of the neutral phenol in GFP-like chromophore. Our approach to detect the neutral chromophore form expands the application of fluorescent timer proteins to faster promoter activities and more spectrally distinguishable fluoresc...
AbstractThe tetrameric red fluorescent protein, DsRed, undergoes a rapid red to green color change e...
SummaryWe determined the 2.2 Å crystal structures of the red fluorescent protein TagRFP and its deri...
We studied the emission of mutants of the red fluorescent protein DsRed by room temperature single m...
AbstractThe mechanism of the chromophore maturation in members of the green fluorescent protein (GFP...
The current accepted mechanism for DsRed chromo-phore formation consists of the formation of a GFP-l...
Red fluorescent proteins (RFPs) derived from organisms in the class Anthozoa have found widespread a...
In the last decade, a number of red fluorescent proteins (RFPs) that emit orange, red, and far-red f...
SummaryWe used a red chromophore formation pathway, in which the anionic red chromophore is formed f...
AbstractThe green fluorescent protein (GFP)-homologous red fluorescent protein (RFP) from Discosoma ...
We used a red chromophore formation pathway, in which the anionic red chromophore is formed from the...
AbstractThe coral red fluorescent protein (DsRed) absorbs and emits light at much higher wavelengths...
ABSTRACT: Understanding the chromophore maturation process in fluorescent proteins is important for ...
chromophore is formed via the mTagBFP-like blue the DsRed chromophore can be formed from a blue prot...
The coral red fluorescent protein (DsRed) absorbs and emits light at much higher wavelengths than th...
Recent studies on the newly cloned red fluorescence protein DsRed from the Discosoma genus have sho...
AbstractThe tetrameric red fluorescent protein, DsRed, undergoes a rapid red to green color change e...
SummaryWe determined the 2.2 Å crystal structures of the red fluorescent protein TagRFP and its deri...
We studied the emission of mutants of the red fluorescent protein DsRed by room temperature single m...
AbstractThe mechanism of the chromophore maturation in members of the green fluorescent protein (GFP...
The current accepted mechanism for DsRed chromo-phore formation consists of the formation of a GFP-l...
Red fluorescent proteins (RFPs) derived from organisms in the class Anthozoa have found widespread a...
In the last decade, a number of red fluorescent proteins (RFPs) that emit orange, red, and far-red f...
SummaryWe used a red chromophore formation pathway, in which the anionic red chromophore is formed f...
AbstractThe green fluorescent protein (GFP)-homologous red fluorescent protein (RFP) from Discosoma ...
We used a red chromophore formation pathway, in which the anionic red chromophore is formed from the...
AbstractThe coral red fluorescent protein (DsRed) absorbs and emits light at much higher wavelengths...
ABSTRACT: Understanding the chromophore maturation process in fluorescent proteins is important for ...
chromophore is formed via the mTagBFP-like blue the DsRed chromophore can be formed from a blue prot...
The coral red fluorescent protein (DsRed) absorbs and emits light at much higher wavelengths than th...
Recent studies on the newly cloned red fluorescence protein DsRed from the Discosoma genus have sho...
AbstractThe tetrameric red fluorescent protein, DsRed, undergoes a rapid red to green color change e...
SummaryWe determined the 2.2 Å crystal structures of the red fluorescent protein TagRFP and its deri...
We studied the emission of mutants of the red fluorescent protein DsRed by room temperature single m...