Scinovex
article Open AccessTop 1% cited

Rapid Protein Depletion in Human Cells by Auxin-Inducible Degron Tagging with Short Homology Donors

Cell Reports · 2016 · Vol. 15(1) · pp. 210–218
Toyoaki NatsumeTomomi KiyomitsuYumiko SagaMasato T. Kanemaki

Abstract

Studying the role of essential proteins is dependent upon a method for rapid inactivation, in order to study the immediate phenotypic consequences. Auxin-inducible degron (AID) technology allows rapid depletion of proteins in animal cells and fungi, but its application to human cells has been limited by the difficulties of tagging endogenous proteins. We have developed a simple and scalable CRISPR/Cas-based method to tag endogenous proteins in human HCT116 and mouse embryonic stem (ES) cells by using donor constructs that harbor synthetic short homology arms. Using a combination of AID tagging with CRISPR/Cas, we have generated conditional alleles of essential nuclear and cytoplasmic proteins in HCT116 cells, which can then be depleted very rapidly after the addition of auxin to the culture medium. This approach should greatly facilitate the functional analysis of essential proteins, particularly those of previously unknown function.

CRISPR and Genetic EngineeringTransgenic Plants and ApplicationsCAR-T cell therapy researchDegronCRISPRBiologyCell biologyPhenotypeEndogenyEmbryonic stem cellCytoplasmNuclear proteinFunction (biology)

MeSH terms

AnimalsHumansIndoleacetic AcidsReceptors, Cell SurfaceSequence HomologyGene TargetingGenes, EssentialArabidopsis ProteinsF-Box ProteinsHCT116 CellsMiceEmbryonic Stem CellsProteolysisCRISPR-Cas Systems

Funding

  • Japan Society for the Promotion of Science
  • Japan Science and Technology Agency
Citations
752
FWCI
29.24
field-weighted impact
References
36
Percentile
100%
vs. same field & year
Citations per year
References
Genome engineering using the CRISPR-Cas9 system
Nature Protocols · 2013 · 11,552 citations
RNA-Guided Human Genome Engineering via Cas9
Science · 2013 · 9,293 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.