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Retroformer: Pushing the Limits of Interpretable End-to-end Retrosynthesis Transformer

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arxiv 2201.12475 v1 pith:FZMTDNPW submitted 2022-01-29 physics.chem-ph cs.LG

classification physics.chem-phcs.LG
keywords retroformerretrosynthesisreactionend-to-endgenerativeinterpretablelimitslocal
verification ladder T0 review T1 audit T2 compute T3 formal
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Retrosynthesis prediction is one of the fundamental challenges in organic synthesis. The task is to predict the reactants given a core product. With the advancement of machine learning, computer-aided synthesis planning has gained increasing interest. Numerous methods were proposed to solve this problem with different levels of dependency on additional chemical knowledge. In this paper, we propose Retroformer, a novel Transformer-based architecture for retrosynthesis prediction without relying on any cheminformatics tools for molecule editing. Via the proposed local attention head, the model can jointly encode the molecular sequence and graph, and efficiently exchange information between the local reactive region and the global reaction context. Retroformer reaches the new state-of-the-art accuracy for the end-to-end template-free retrosynthesis, and improves over many strong baselines on better molecule and reaction validity. In addition, its generative procedure is highly interpretable and controllable. Overall, Retroformer pushes the limits of the reaction reasoning ability of deep generative models.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Variational-Ising-Attention (VIA):TailoredAttentionMattersfor Science

    cs.LG 2026-07 conditional novelty 6.0 of 10

    Variational-Ising-Attention with backbone-deployed low-rank couplings substantially beats softmax on USPTO-50k reaction-center exact-match, especially for multi-center cases.

  2. Hierarchical Framework for Retrosynthesis Prediction with Enhanced Reaction Center Localization

    physics.chem-ph 2024-11 conditional novelty 5.0 of 10

    HierRetro achieves top-3 retrosynthesis accuracy of 78.3% without reaction type and 89.4% with reaction type on USPTO-50k.

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