Fluorogenic dyes such as FlAsH and ReAsH are used widely to localize, monitor, and characterize proteins and their assemblies in live cells. These bis-arsenical dyes can become fluorescent when bound to a protein containing four proximal Cys thiolsa tetracysteine (Cys<sub>4</sub>) motif. Yet the mechanism by which bis-arsenicals become fluorescent upon binding a Cys<sub>4</sub> motif is unknown, and this nescience limits more widespread application of this tool. Here we probe the origins of ReAsH fluorogenicity using both computation and experiment. Our results support a model in which ReAsH fluorescence depends on the relative orientation of the aryl chromophore and the appended arsenic chelate: the fluorescence is rotamer-restricted. Our...
Fluorophores with dynamic or controllable fluorescence emission have become essential tools for adva...
119 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.Single-molecule fluorescence ...
Genetically encodable fluorescent proteins have revolutionized biological imaging in vivo and in vit...
Fluorogenic dyes such as FlAsH and ReAsH are used widely to localize, monitor, and characterize prot...
Fluorogenic dyes such as FlAsH and ReAsH are used widely to localize, monitor, and characterize prot...
Arsenic-binding proteins are under continuous research. Their identification and the elucidation of ...
Sherpa Romeo green journal. Open access article. Creative Commons Attribution 4.0 International Lice...
Arsenic-binding proteins are under continuous research. Their identification and the elucidation of ...
Fluorescent proteins and dyes are essential tools for the study of protein trafficking, localization...
There is considerable interest in novel biomolecule imaging tools that avoid the use of fluorescent ...
<p>Novel fluorescent tools such as green fluorescent protein analogues and fluorogen activating prot...
SummaryWe have designed “split tetra-Cys motifs” that bind the biarsenical fluorescein dye 4′,5′-bis...
International audienceFluorescent proteins have revolutionized life sciences because they allow noni...
The utility of fluorophores for sensing applications in the current state of the art of biological i...
Single-molecule FRET (smFRET) is a powerful tool to investigate conformational changes of biological...
Fluorophores with dynamic or controllable fluorescence emission have become essential tools for adva...
119 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.Single-molecule fluorescence ...
Genetically encodable fluorescent proteins have revolutionized biological imaging in vivo and in vit...
Fluorogenic dyes such as FlAsH and ReAsH are used widely to localize, monitor, and characterize prot...
Fluorogenic dyes such as FlAsH and ReAsH are used widely to localize, monitor, and characterize prot...
Arsenic-binding proteins are under continuous research. Their identification and the elucidation of ...
Sherpa Romeo green journal. Open access article. Creative Commons Attribution 4.0 International Lice...
Arsenic-binding proteins are under continuous research. Their identification and the elucidation of ...
Fluorescent proteins and dyes are essential tools for the study of protein trafficking, localization...
There is considerable interest in novel biomolecule imaging tools that avoid the use of fluorescent ...
<p>Novel fluorescent tools such as green fluorescent protein analogues and fluorogen activating prot...
SummaryWe have designed “split tetra-Cys motifs” that bind the biarsenical fluorescein dye 4′,5′-bis...
International audienceFluorescent proteins have revolutionized life sciences because they allow noni...
The utility of fluorophores for sensing applications in the current state of the art of biological i...
Single-molecule FRET (smFRET) is a powerful tool to investigate conformational changes of biological...
Fluorophores with dynamic or controllable fluorescence emission have become essential tools for adva...
119 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.Single-molecule fluorescence ...
Genetically encodable fluorescent proteins have revolutionized biological imaging in vivo and in vit...