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Updated: Aug 5, 2026

Pulldown Assay Coupled with Co-Expression in Bacteria Cells as a Time-Efficient Tool for Testing Challenging Protein-Protein Interactions
Published on: December 23, 2022
A co-overexpression strategy allows effective protein-protein binding affinities to be assessed as a function of
1Department of Molecular and Cellular Biology, University of California Davis, Davis, California.
Abstract:
Weak, transient molecular interactions are ubiquitous amongst biological molecules. Regulatability by intracellular concentrations, localization, physical properties of the cytoplasm, and other factors is central to their importance. Here, we measure co-localization between fluorescently labeled proteins, Miro2 and β-Pix, to assess their effective binding affinity and its dependence on protein concentration. Co-localization between the two is quantifiable due to the mitochondrial localization of Miro2, which allows the otherwise cytosolic β-Pix to be drawn to mitochondria. Determining the fraction of overexpressed β-Pix co-localizing with mitochondria as a function of overexpressed Miro2 levels allows calculation of an effective dissociation constant from a mass-action binding model. Both the fit to the model and the effective dissociation constant for Miro2 and β-Pix binding depend on the concentration of β-Pix, which suggests that one or more model assumptions do not hold. Additional experiments reveal that competitive binding and/or β-Pix sequestration by Git1 are possible explanations for the β-Pix concentration dependence. Our modeling strategy is readily extendable to ectopic localization of proteins to mitochondria and other compartments for the assessment of co-localization with a binding partner. This reveals fundamental properties of protein-protein interactions and how they may be regulated by protein concentration and other intracellular conditions.
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