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Optimization of Fluorescent Proteins
2013Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different colors; to display photoswitchable, or photochromic, behavior; or to show yet other beneficial properties that enable or enhance a still growing set of new fluorescence spectroscopy and microcopy techniques.
Bindels, D.S. +5 more
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Fluorescence lifetime imaging of coral fluorescent proteins
Microscopy Research and Technique, 2007AbstractCorals, like many other coelenterates, contain fluorescent pigments that show considerable homology with the well known green fluorescent protein of the jellyfish Aequoria. In corals, unlike jellyfish, multiple proteins are present and the range of excitations and emissions suggest the possibility of energy transfer.
Guy, Cox, Mikhail, Matz, Anya, Salih
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Fluorescent Labeling of Proteins
2011Many single-molecule experimental techniques exploit fluorescence as a tool to investigate conformational dynamics and molecular interactions or track the movement of proteins in order to gain insight into their biological functions. A prerequisite to these experimental approaches is to graft one or more fluorophores on the protein of interest with the
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Engineering Fluorescent Proteins
2005Green fluorescent protein from the jellyfish Aequorea victora (GFP) and GFP-like proteins from Anthozoa species encode light-absorbing chromophores intrinsically within their respective protein sequences. Recent studies have made progress in obtaining bright variants of these proteins which develop chromophores quickly and efficiently, as well as novel
Atsushi, Miyawaki +2 more
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Annual Review of Biochemistry, 1998
In just three years, the green fluorescent protein (GFP) from the jellyfish Aequorea victoria has vaulted from obscurity to become one of the most widely studied and exploited proteins in biochemistry and cell biology. Its amazing ability to generate a highly visible, efficiently emitting internal fluorophore is both intrinsically fascinating and ...
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In just three years, the green fluorescent protein (GFP) from the jellyfish Aequorea victoria has vaulted from obscurity to become one of the most widely studied and exploited proteins in biochemistry and cell biology. Its amazing ability to generate a highly visible, efficiently emitting internal fluorophore is both intrinsically fascinating and ...
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Photochemistry and Photobiology, 1995
Abstract— Several bioluminescent coelenterates use a secondary fluorescent protein, the green fluorescent protein (GFP), in an energy transfer reaction to produce green light. The most studied of these proteins have been the GFPs from the jellyfish Aequorea victoria and the sea pansy Renilla reniformis.
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Abstract— Several bioluminescent coelenterates use a secondary fluorescent protein, the green fluorescent protein (GFP), in an energy transfer reaction to produce green light. The most studied of these proteins have been the GFPs from the jellyfish Aequorea victoria and the sea pansy Renilla reniformis.
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Fishing for fluorescent proteins
Nature Methods, 2013The first fluorescent protein cloned from a vertebrate species is a promising tool for clinical diagnostics and research.
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The Rainbow of Fluorescent Proteins
2004Publisher Summary Fluorescent proteins (FPs) are a class of proteins that exhibit fluorescence as a consequence of fluorophore formation by an intramolecular reaction of the amino acid side chains contained within these proteins. The FPs can be modified to access specific cellular locations and specific physiological processes, and to act as specific
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mScarlet3: a brilliant and fast-maturing red fluorescent protein
Nature Methods, 2023Ben Giepmans +2 more
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