bioRxiv · 10.1101/606202
Deciphering interaction fingerprints from protein molecular surfaces
Abstract
Predicting interactions between proteins and other biomolecules purely based on structure is an unsolved problem in biology. A high-level description of protein structure, the molecular surface, displays patterns of chemical and geometric features that fingerprint a proteins modes of interactions with other biomolecules. We hypothesize that proteins performing similar interactions may share common fingerprints, independent of their evolutionary history. Fingerprints may be difficult to grasp by visual analysis but could be learned from large-scale datasets. We present MaSIF, a conceptual framework based on a new geometric deep learning method to capture fingerprints that are important for specific biomolecular interactions. We showcase MaSIF with three prediction challenges: protein pocket-ligand prediction, protein-protein interaction site prediction, and ultrafast scanning of protein surfaces for prediction of protein-protein complexes. We anticipate that our conceptual framework will lead to improvements in our understanding of protein function and design.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Gainza, P., Sverrisson, F., Monti, F., Rodola, E., Bronstein, M. M., Correia, B. E.. 2019-04-11. Deciphering interaction fingerprints from protein molecular surfaces. https://doi.org/10.1101/606202
Cite the original work for its findings. Save a collection to share your selection of sources.