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- W2973118395 abstract "Abstract Existing optogenetic tools for controlling protein-protein interactions are available in a limited number of wavelengths thereby limiting opportunities for multiplexing. The cyanobacteriochrome (CBCR) family of photoreceptors responds to an extraordinary range of colors, but light-dependent binding partners for CBCR domains are not currently known. We used a phage-display based approach to develop small (~50-residue) monomeric binders selective for the green absorbing state (Pg), or for the red absorbing state (Pr) of the CBCR Am1_c0023g2 with a phycocyanobilin chromophore and also for the far-red absorbing state (Pfr) of Am1_c0023g2 with a biliverdin chromophore. These bind in a 1:1 mole ratio with K D s for the target state from 0.2 to 2 μM and selectivities from 10 to 500-fold. We demonstrate green, orange, red, and far-red light-dependent control of protein-protein interactions in vitro and also in vivo where these multicolor optogenetic tools are used to control transcription in yeast." @default.
- W2973118395 created "2019-09-19" @default.
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- W2973118395 date "2019-09-14" @default.
- W2973118395 modified "2023-09-24" @default.
- W2973118395 title "Green, orange, red, and far-red optogenetic tools derived from cyanobacteriochromes" @default.
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- W2973118395 doi "https://doi.org/10.1101/769422" @default.
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