A general approach for chemical labeling and rapid, spatially controlled protein inactivation
- 24 June 2004
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (27) , 9982-9987
- https://doi.org/10.1073/pnas.0401609101
Abstract
Chemical labeling of proteins inside of living cells can enable studies of the location, movement, and function of proteins in vivo. Here we demonstrate an approach for chemical labeling of proteins that uses the high-affinity interaction between an FKBP12 mutant (F36V) and a synthetic, engineered ligand (SLF′). A fluorescein conjugate to the engineered ligand (FL-SLF′) retained binding to FKBP12(F36V) and possessed similar fluorescence properties as parental fluorescein. FL-SLF′ labeled FKBP12(F36V) fusion proteins in live mammalian cells, and was used to monitor the subcellular localization of a membrane targeted FKBP12(F36V) construct. Chemical labeling of FKBP12(F36V) fusion proteins with FL-SLF′ was readily detectable at low expression levels of the FKBP12(F36V) fusion, and the level of fluorescent staining with FL-SLF′ was proportional to the FKBP12(F36V) expression level. This FL-SLF′-FKBP12(F36V) labeling technique was tested in fluorophore assisted laser inactivation (FALI), a light-mediated technique to rapidly inactivate fluorophore-labeled target proteins. FL-SLF′ mediated FALI of a β-galactosidase-FKBP12(F36V) fusion protein, causing rapid inactivation of >90% of enzyme activity upon irradiation in vitro. FL-SLF′ also mediated FALI of a β-galactosidase fusion expressed in living NIH 3T3 cells, where β-galactosidase activity was reduced in 15 s. Thus, FL-SLF′ can be used to monitor proteins in vivo and to target rapid, spatially and temporally defined inactivation of target proteins in living cells in a process that we call FK-FALI.Keywords
This publication has 32 references indexed in Scilit:
- In Vivo Targeting of Organic Calcium Sensors via Genetically Selected PeptidesChemistry & Biology, 2004
- Genetically targeted chromophore-assisted light inactivationNature Biotechnology, 2003
- Expression profiling reveals off-target gene regulation by RNAiNature Biotechnology, 2003
- Visualizing Signals Moving in CellsScience, 2003
- A general method for the covalent labeling of fusion proteins with small molecules in vivoNature Biotechnology, 2002
- Transgenically Encoded Protein Photoinactivation (FlAsH-FALI)Neuron, 2002
- Partitioning of Lipid-Modified Monomeric GFPs into Membrane Microdomains of Live CellsScience, 2002
- Specific Covalent Labeling of Recombinant Protein Molecules Inside Live CellsScience, 1998
- THE GREEN FLUORESCENT PROTEINAnnual Review of Biochemistry, 1998
- Cell discrimination by multiangle light scattering.Journal of Histochemistry & Cytochemistry, 1976