VerteBrain reveals novel neural and non-neural protein assemblies conserved across vertebrate evolution
Dang, V.; Voigt, B.; Yang, D.; Hoogerbrugge, G.; Lee, M.; Cox, R.; Papoulas, O.; McWhite, C. D.; Pradeep, R.; Leggere, J. C.; Neely, B. A.; Gray, R. S.; Marcotte, E. M.
Show abstract
Protein-protein interactions underlie core brain functions, including neurotransmitter release, receptor activation, and intracellular signaling essential for learning, memory, and cognition. Here, we systematically map conserved brain protein interactions across five vertebrate species-rabbit, chicken, dolphin, pig, and mouse-using co-fractionation and immunoprecipitation mass spectrometry. From 2,197 biochemical fractions, we identify over 81,000 high-confidence interactions among 6,108 conserved proteins. This interaction map (VerteBrain) reveals both regulatory and structural complexes, including extensive synaptonemal protein associations likely involved in inter-neuronal coordination. Conservation across species underscores essential roles in neuronal and glial function, as well as in additional tissues for more widely expressed complexes. The VerteBrain dataset uncovers candidate disease mechanisms, including roles for ARHGEF1 in short stature syndromes, synaptic vesicle trafficking complexes in epilepsy, and RELCH in congenital deafness. VerteBrain provides a publicly accessible framework for investigating brain protein interactions and their relevance to human neurological disorders.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genoppi: an open-source software for robust and standardized integration of proteomic and genetic data 97%
- TopBP1 utilises a bipartite GINS binding mode to support genome replication 97%
- Surfaceome dynamics during neuronal development and synaptic plasticity reveal system-wide surfaceome reorganization independent of global proteostasis 96%
Similar papers in this journal
- Turnover and replication analysis by isotope labeling (TRAIL) reveals the influence of tissue context on protein and organelle lifetimes 97%
- hu.MAP3.0: Atlas of human protein complexes by integration of > 25,000 proteomic experiments 96%
- A proximity proteomics pipeline with improved reproducibility and throughput 96%
Similar papers in this journal
Similar papers in this journal
"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.