Abstract
Human cellular retinol binding protein II (hCRBPII) was used as a protein engineering platform to rationally regulate absorptive and emissive properties of a covalently bound fluorogenic dye. We demonstrate the binding of a thio-dapoxyl analog via formation of a protonated imine between an active site lysine residue and the chromophore’s aldehyde. Rational manipulation of the electrostatics of the binding pocket results in a 204 nm shift in absorption and a 131 nm shift in emission. The protein is readily expressed in mammalian systems and binds with exogenously delivered fluorophore as demonstrated by live-cell imaging experiments.
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CITATION STYLE
Santos, E. M., Chandra, I., Assar, Z., Sheng, W., Ghanbarpour, A., Bingham, C., … Borhan, B. (2024). Regulation of Absorption and Emission in a Protein/Fluorophore Complex. ACS Chemical Biology, 19(8), 1725–1732. https://doi.org/10.1021/acschembio.4c00125
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