ASAP-ID: Proximity labelling with small tags
Lyu, R.; Ruff, K. M.; Palmer, C. S.; Ramirez, A. E.; Ormsby, A. R.; Scott, D. J.; Pappu, R. V.; Stojanovski, D.; Stroud, D. A.; Hatters, D. M.
Show abstract
Biotinylation-based proximity labelling methods are valuable for discovering protein-protein interactions within cellular systems. However, one limitation of these approaches is that most require fusing the target protein with the enzyme that biotinylates nearby proteins (i.e., TurboID or APEX2), which risks sterically disrupting the proteins native function. Here, we present a method designed to reduce the steric impact of these fusions and offer greater flexibility in labelling modalities. The method, Antibody and Small-tag Assembly on Proteins for Interaction Detection (ASAP-ID), involves a bipartite system. Target proteins are fused to a small peptide antigen that recruits TurboID or APEX2 fused to an antibody directed to the antigen. Using two different antigen/antibody systems (SunTag and MoonTag), we show that ASAP-ID can specifically label human Lamin A in cells. The method works when the target protein and nanobody are co-expressed together in cis (ASAP-IDIC). We also demonstrate that the approach works when the antibody fusion is added in trans to fixed cells post-expression (ASAP-IDIT). ASAP-IDIT identified more than 448 known and previously undescribed interactors of lamin. We further used ASAP-IDIT to study how ALS-mutant profilin 1 affected its interactome. The method identified proteins involved in protein quality control that correlated with aggregation propensity. Moreover, the different mutants showed variation in the cellular location where aggregates formed. ASAP-IDIT revealed preferences for mitochondrial proteins for the two profilin mutants that tend to aggregate in the cytoplasm, C71G and M114T, and nuclear proteins for a mutant more prone to nuclear aggregation. These findings position ASAP-ID as a powerful addition to the proximity labelling toolkit, capable of probing subtle differences in interactomes in a less invasive manner.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Development of an inhibitory TTC7B selective nanobody that blocks EFR3 recruitment of PI4KA 96%
- Mapping the MOB proteins' proximity network reveals a unique interaction between human MOB3C and the RNase P complex 96%
- An improved TurboID pipeline in C. elegans by biochemical depletion of endogenously biotinylated carboxylases 95%
Similar papers in this journal
Similar papers in this journal
- Phosphoproteomics reveals that the hVPS34 regulated SGK3 kinase specifically phosphorylates endosomal proteins including Syntaxin-7, Syntaxin-12, RFIP4 and WDR44 94%
- Single-molecule observations of human small heat shock proteins in complex with aggregation-prone client proteins 93%
- Development of a multiplexed targeted mass spectrometry assay for LRRK2 phosphorylated Rabs and Ser910/Ser935 biomarker sites 93%
Similar papers in this journal
- Pathogenic mutations of human phosphorylation sites affect protein-protein interactions 95%
- Dynamic tracking and identification of tissue-specific secretory proteins in the circulation of live mice 95%
- Large scale discovery of coronavirus-host factor protein interaction motifs reveals SARS-CoV-2 specific mechanisms and vulnerabilities 95%