Identification of a PU.1-IRF4 protein interaction surface predicted by chemical exchange line broadening.

McKercher, Scott R; Lombardo, Christian R; Bobkov, Andrey; Jia, Xin; Assa-Munt, Nuria · Proc Natl Acad Sci U S A · 2003

basic_science · Level V

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Abstract

Relaxation values reflecting residue-specific line broadening revealed amino acids in the DNA-binding domain of PU.1 on a surface potentially involved in protein-protein interactions. Mutation of these amino acids did not cause protein unfolding but destabilized PU.1-DNA binding. Addition of IFN response factor 4 to form the ternary complex recovered binding stability. Fluorescence quenching experiments proved that this surface of PU.1 interacts with IFN response factor 4 during binding. Our results provide evidence that residues that display increased conformational exchange can be used to predict areas of protein-protein interactions.

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