ArticleeLife2024
Detection of TurboID fusion proteins by fluorescent streptavidin outcompetes antibody signals and visualises targets not accessible to antibodies.
Article in eLife, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Radical diffusion, not lifetime, determines the range of peroxidase-based proximity labelling.Journal of cell science · 2026Article
- Protein Localization with Streptavidin-Imaging: Boost Your Signal, Reduce Noise, Overcome Antibody Accessibility Problems, and Time-Travel to the Past.Methods in molecular biology (Clifton, N.J.) · 2026Article
- A Practical Guide to Ultrastructural Expansion Microscopy (U-ExM) in Trypanosoma brucei.Methods in molecular biology (Clifton, N.J.) · 2026Article
- Immunoelectron microscopy: a comprehensive guide from sample preparation to high-resolution imaging.Discover nano · 2025Review
- Next generation genetic screens in kinetoplastids.Nucleic acids research · 2025Review
- Immunocytochemical detection of proteins within cellular structures inaccessible to specific antibodies.Histochemistry and cell biology · 2025Review
- A comprehensive toolkit for protein localization and functional analysis in trypanosomatids.Open biology · 2025Article
- Detailed characterisation of the trypanosome nuclear pore architecture reveals conserved asymmetrical functional hubs that drive mRNA export.PLoS biology · 2025Article
- Multifunctional roles of Sec13 paralogues in the euglenozoanOpen biology · 2025Article
- Article
- Multifunctional Roles of Sec13 Paralogues in the EuglenozoanbioRxiv : the preprint server for biology · 2024Article
Corrections and comments
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Authors and funding
6 authors.
Funding
Abstract
Immunofluorescence localises proteins via fluorophore-labelled antibodies. However, some proteins evade detection due to antibody-accessibility issues or because they are naturally low abundant or antigen density is reduced by the imaging method. Here, we show that the fusion of the target protein to the biotin ligase TurboID and subsequent detection of biotinylation by fluorescent streptavidin offers an 'all in one' solution to these restrictions. For all proteins tested, the streptavidin signal was significantly stronger than an antibody signal, markedly improving the sensitivity of expansion microscopy and correlative light and electron microscopy. Importantly, proteins within phase-separated regions, such as the central channel of the nuclear pores, the nucleolus, or RNA granules, were readily detected with streptavidin, while most antibodies failed. When TurboID is used in tandem with an HA epitope tag, co-probing with streptavidin and anti-HA can map antibody-accessibility and we created such a map for the trypanosome nuclear pore. Lastly, we show that streptavidin imaging resolves dynamic, temporally, and spatially distinct sub-complexes and, in specific cases, reveals a history of dynamic protein interaction. In conclusion, streptavidin imaging has major advantages for the detection of lowly abundant or inaccessible proteins and in addition, provides information on protein interactions and biophysical environment.
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