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Gotta be SAFE: A New Framework for Molecular Design

About

Traditional molecular string representations, such as SMILES, often pose challenges for AI-driven molecular design due to their non-sequential depiction of molecular substructures. To address this issue, we introduce Sequential Attachment-based Fragment Embedding (SAFE), a novel line notation for chemical structures. SAFE reimagines SMILES strings as an unordered sequence of interconnected fragment blocks while maintaining compatibility with existing SMILES parsers. It streamlines complex generative tasks, including scaffold decoration, fragment linking, polymer generation, and scaffold hopping, while facilitating autoregressive generation for fragment-constrained design, thereby eliminating the need for intricate decoding or graph-based models. We demonstrate the effectiveness of SAFE by training an 87-million-parameter GPT2-like model on a dataset containing 1.1 billion SAFE representations. Through targeted experimentation, we show that our SAFE-GPT model exhibits versatile and robust optimization performance. SAFE opens up new avenues for the rapid exploration of chemical space under various constraints, promising breakthroughs in AI-driven molecular design.

Emmanuel Noutahi, Cristian Gabellini, Michael Craig, Jonathan S.C Lim, Prudencio Tossou• 2023

Related benchmarks

TaskDatasetResultRank
De novo small molecule generationSAFE (test)
Validity94
22
Unconditional molecular generationMOSES
Validity99.8
20
De Novo Molecular GenerationZINC Curated 22 (test)
Validity (%)0.932
17
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