Abstract
Protein-Observed Fluorine NMR (PrOF NMR) spectroscopy is an emerging technique for screening and characterizing small-molecule–protein interactions. The choice of which amino acid to label for PrOF NMR can be critical for analysis. Here we report the first use of a protein containing two different fluoroaromatic amino acids for NMR studies. Using the KIX domain of the CBP/p300 as a model system, we examine ligand binding of several small-molecule compounds elaborated from our previous fragment screen and identify a new ligand binding site distinct from those used by native transcription factors. This site was further supported by computational modeling (FTMap and Schrödinger) and 1H,15N HSQC/HMQC NMR spectroscopy. Metabolic labeling with multiple fluorinated amino acids provides useful probes for further studying ligand binding and has led to new insight for allosterically regulating transcription-factor protein interactions with small-molecule ligands.
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Gee, C. T., Arntson, K. E., Koleski, E. J., Staebell, R. L., & Pomerantz, W. C. K. (2018). Dual Labeling of the CBP/p300 KIX Domain for 19F NMR Leads to Identification of a New Small-Molecule Binding Site. ChemBioChem, 19(9), 963–969. https://doi.org/10.1002/cbic.201700686
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