Intracellular photocatalytic-proximity labeling for profiling protein-protein interactions in microenvironments

Intracellular photocatalytic-proximity labeling (iPPL) was developed to profile protein-protein interactions in the microenvironment of living cells. Acriflavine was found to be an efficient cell-membrane-permeable photocatalyst for introduction into the genetically HaloTag-fused protein of interest...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2022-02, Vol.58 (12), p.1926-1929
Hauptverfasser: Tsushima, Michihiko, Sato, Shinichi, Miura, Kazuki, Niwa, Tatsuya, Taguchi, Hideki, Nakamura, Hiroyuki
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Sprache:eng
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Zusammenfassung:Intracellular photocatalytic-proximity labeling (iPPL) was developed to profile protein-protein interactions in the microenvironment of living cells. Acriflavine was found to be an efficient cell-membrane-permeable photocatalyst for introduction into the genetically HaloTag-fused protein of interest for iPPL with a radical labeling reagent, 1-methyl-4-arylurazole. iPPL was applied to the histone-associated protein H2B in HaloTag-H2B expressing HEK293FT cells. The proteins directly interacting with histones and RNA-binding proteins were selectively labeled in the intracellular environment, suggesting that the iPPL method has a smaller labeling radius ( ca. 6 nm) than the BioID and APEX methods. Intracellular photocatalytic-proximity labeling (iPPL) was developed to profile protein-protein interactions in the microenvironment of living cells.
ISSN:1359-7345
1364-548X
DOI:10.1039/d1cc05764b