Dissection of the Spindle Assembly Checkpoint by Proximity Proteomics
Garcia, Y. A.; Velasquez, E. F.; Gao, L. A.; Cheung, K.; Clutario, K. M.; Williams-Hamilton, T.; Gholkar, A. A.; Whitelegge, J. P.; Torres, J. Z.
Show abstract
The spindle assembly checkpoint (SAC) is critical for sensing defective microtubule-kinetochore attachments and tension across the kinetochore and functions to arrest cells in prometaphase to allow time to repair any errors prior to proceeding into anaphase. The SAC has a central role in ensuring the fidelity of chromosome segregation and its dysregulation has been linked to the development of human diseases like cancer. The establishment and maintenance of the SAC relies on multiple protein complexes that are intricately regulated in a spatial and temporal manner through posttranslational modifications like phosphorylation. Over the past few decades the SAC has been highly investigated and much has been learned about its protein constituents and the pathways and factors that regulate its activity. However, the spatio-temporal proximity associations of the core SAC components have not been explored in a systematic manner. Here, we have taken a BioID2 proximity-labeling proteomic approach to define the proximity protein environment for each of the five core SAC proteins BUB1, BUB3, BUBR1, MAD1L1, and MAD2L1 under conditions where the SAC is active in prometaphase. These five protein association maps were integrated to generate the SAC proximity protein network that contains multiple layers of information related to core SAC protein complexes, protein-protein interactions, and proximity associations. Our analysis validated many of the known SAC complexes and protein-protein interactions. Additionally, it uncovered new protein associations that lend insight into the functioning of the SAC and highlighted future areas that should be investigated to generate a comprehensive understanding of the SAC.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Mapping the MOB proteins' proximity network reveals a unique interaction between human MOB3C and the RNase P complex 95%
- Flagellar targeting of an arginine kinase requires the conserved Lipidated Intraflagellar Transport (LIFT) pathway in Trypanosoma brucei 95%
- Phosphoregulation of RAD51AP1 function in homology-directed repair 95%
Similar papers in this journal
Similar papers in this journal
- Ataxin-7 and non-stop coordinate SCAR protein levels, subcellular localization, and actin cytoskeleton organization 95%
- A Spatiotemporal Reconstruction of the C. elegans Pharyngeal Cuticle Reveals a Structure Rich in Phase-Separating Proteins 94%
- DYRK1A Interacts with the Tuberous Sclerosis Complex and Promotes mTORC1 Activity 94%
Similar papers in this journal
- Functional characterization of RebL1 highlights the evolutionary conservation of oncogenic activities of the RBBP4/7 orthologue in Tetrahymena thermophila 96%
- Linking Kinetochore Attachment to Checkpoint Control: The Role of Aurora B in BubR1 Acetylation 95%
- AURKB-driven dissolution of CIZ1-RNA assemblies from the inactive X chromosome in mitosis 95%
Similar papers in this journal
- An invariant C-terminal tryptophan in McdB mediates its interaction and positioning function with carboxysomes 94%
- The ARF GAPs ELMOD1 and ELMOD3 act at the Golgi and Cilia to Regulate Ciliogenesis and Ciliary Protein Traffic 94%
- Differential Requirements for the CENP-O Complex Reveal Parallel PLK1 Kinetochore Recruitment Pathways 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.