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Imaging Beads-Retained Prey Assay for Rapid and Quantitative Protein-Protein Interaction
Author(s) -
Yan Zhou,
Wanjin Hong,
Lei Lü
Publication year - 2013
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0059727
Subject(s) - orfs , fluorescence , quantitative analysis (chemistry) , fluorescence microscope , chromatography , biology , fluorescent labelling , bradford protein assay , quantitative proteomics , chemistry , biophysics , computational biology , biochemistry , proteomics , peptide sequence , gene , quantum mechanics , open reading frame , physics
Conventional Western blot based pull-down methods involve lengthy and laborious work and the results are generally not quantitative. Here, we report the imaging beads-retained prey (IBRP) assay that is rapid and quantitative in studying protein-protein interactions. In this assay, the bait is immobilized onto beads and the prey is fused with a fluorescence protein. The assay takes advantage of the fluorescence of prey and directly quantifies the amount of prey binding to the immobilized bait under a microscope. We validated the assay using previously well studied interactions and found that the amount of prey retained on beads could have a relative linear relationship to both the inputs of bait and prey. IBRP assay provides a universal, fast, quantitative and economical method to study protein interactions and it could be developed to a medium- or high-throughput compatible method. With the availability of fluorescence tagged whole genome ORFs in several organisms, we predict IBRP assay should have wide applications.

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