Junction Tree Variational Autoencoder for Molecular Graph Generation
February 12, 2018 ยท Declared Dead ยท ๐ International Conference on Machine Learning
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Authors
Wengong Jin, Regina Barzilay, Tommi Jaakkola
arXiv ID
1802.04364
Category
cs.LG: Machine Learning
Cross-listed
cs.NE,
stat.ML
Citations
1.6K
Venue
International Conference on Machine Learning
Last Checked
2 months ago
Abstract
We seek to automate the design of molecules based on specific chemical properties. In computational terms, this task involves continuous embedding and generation of molecular graphs. Our primary contribution is the direct realization of molecular graphs, a task previously approached by generating linear SMILES strings instead of graphs. Our junction tree variational autoencoder generates molecular graphs in two phases, by first generating a tree-structured scaffold over chemical substructures, and then combining them into a molecule with a graph message passing network. This approach allows us to incrementally expand molecules while maintaining chemical validity at every step. We evaluate our model on multiple tasks ranging from molecular generation to optimization. Across these tasks, our model outperforms previous state-of-the-art baselines by a significant margin.
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