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An improved smaller biotin ligase for BioID proximity labeling

Molecular Biology of the Cell · 2016 · Vol. 27(8) · pp. 1188–1196
Dae In KimSamuel C. JensenKyle A. NobleBirendra KCKenneth H. RouxKhatereh MotamedchabokiKyle J. Roux

Abstract

The BioID method uses a promiscuous biotin ligase to detect protein-protein associations as well as proximate proteins in living cells. Here we report improvements to the BioID method centered on BioID2, a substantially smaller promiscuous biotin ligase. BioID2 enables more-selective targeting of fusion proteins, requires less biotin supplementation, and exhibits enhanced labeling of proximate proteins. Thus BioID2 improves the efficiency of screening for protein-protein associations. We also demonstrate that the biotinylation range of BioID2 can be considerably modulated using flexible linkers, thus enabling application-specific adjustment of the biotin-labeling radius.

Biotin and Related StudiesCellular transport and secretionClick Chemistry and ApplicationsBiotinBiotinylationDNA ligaseBiologyBiochemistryAvidinUbiquitin ligaseFusion proteinCell biologyComputational biology

MeSH terms

AnimalsBiotinHumansMembrane ProteinsMolecular BiologyNuclear ProteinsRecombinant Fusion ProteinsRepressor ProteinsProtein EngineeringCarbon-Nitrogen LigasesBiotinylationProtein Interaction MappingNuclear Pore Complex ProteinsEscherichia coli ProteinsNIH 3T3 Cells

Funding

  • National Institutes of Health
  • National Institute of General Medical Sciences
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An improved smaller biotin ligase for BioID proximity labeling · Scinovex