Papers › Molecule Edit Graph Attention Network: Modeling Chemical Reactions as Sequences of Graph Edits

Molecule Edit Graph Attention Network: Modeling Chemical Reactions as Sequences of Graph Edits

27 Jun 2020arXiv:2006.15426archive 2025-07-28

Mikołaj Sacha, Mikołaj Błaż, Piotr Byrski, Paweł Dąbrowski-Tumański, Mikołaj Chromiński, Rafał Loska, Paweł Włodarczyk-Pruszyński, Stanisław Jastrzębski

The central challenge in automated synthesis planning is to be able to generate and predict outcomes of a diverse set of chemical reactions. In particular, in many cases, the most likely synthesis pathway cannot be applied due to additional constraints, which requires proposing alternative chemical reactions. With this in mind, we present Molecule Edit Graph Attention Network (MEGAN), an end-to-end encoder-decoder neural model. MEGAN is inspired by models that express a chemical reaction as a sequence of graph edits, akin to the arrow pushing formalism. We extend this model to retrosynthesis prediction (predicting substrates given the product of a chemical reaction) and scale it up to large datasets. We argue that representing the reaction as a sequence of edits enables MEGAN to efficiently explore the space of plausible chemical reactions, maintaining the flexibility of modeling the reaction in an end-to-end fashion, and achieving state-of-the-art accuracy in standard benchmarks. Code and trained models are made available online at https://github.com/molecule-one/megan.

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get_adj_path molecule-one/megan/src/feat/megan_graph.py official repository unverified MIT (permissive) · 35a1bc504611c90d · report
get_base_action_masks molecule-one/megan/src/model/megan_utils.py official repository unverified MIT (permissive) · 042085ae57c430df · report
get_nodes_path molecule-one/megan/src/feat/megan_graph.py official repository unverified MIT (permissive) · 87e4cd29e722b0b6 · report
get_sample_data_path molecule-one/megan/src/feat/megan_graph.py official repository unverified MIT (permissive) · e3709e88b0e80e8d · report
softmax molecule-one/megan/src/model/megan_modules/decoder.py official repository unverified MIT (permissive) · ecfb638373066abe · report
to_one_hot molecule-one/megan/src/model/megan.py official repository unverified MIT (permissive) · e5bfe5eefc935780 · report

Tasks

DecoderGraph AttentionRetrosynthesisSingle-step retrosynthesis

Results from the paper archive 2025-07-28

TaskDatasetModelMetricValueRank at snapshotLeaderboardReport
Single-step retrosynthesis USPTO-50k MEGAN (reaction class as prior) Top-1 accuracy 60.7 #10 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class as prior) Top-10 accuracy 91.6 #10 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class as prior) Top-3 accuracy 82 #10 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class as prior) Top-5 accuracy 87.5 #10 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class unknown) Top-1 accuracy 48.1 #32 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class unknown) Top-10 accuracy 86.1 #32 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class unknown) Top-20 accuracy 90.3 #32 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class unknown) Top-3 accuracy 70.7 #32 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class unknown) Top-5 accuracy 78.4 #32 of 35 Archive leaderboard report
Single-step retrosynthesis USPTO-50k MEGAN (reaction class unknown) Top-50 accuracy 93.2 #32 of 35 Archive leaderboard report

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