Distilling Structural Representations into Protein Sequence Models
Jeffrey Ouyang-Zhang, Chengyue Gong, Yue Zhao, Philipp Krähenbühl, Adam R. Klivans, Daniel Jesus Diaz
Abstract
Protein language models, like the popular ESM2, are widely used tools for extracting evolution-based protein representations and have achieved significant success on downstream biological tasks. Representations based on sequence and structure models, however, show significant performance differences depending on the downstream task. A major open problem is to obtain representations that best capture both the evolutionary and structural properties of proteins in general. Here we introduce Implicit Structure Model (ISM), a sequence-only input model with structurally-enriched representations that outperforms state-of-the-art sequence models on several well-studied benchmarks including mutation stability assessment and structure prediction. Our key innovations are a microenvironment-based autoencoder for generating structure tokens and a self-supervised training objective that distills these tokens into ESM2's pre-trained model. We have made ISM's
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Install the CLIlune papers fulltext 96deaf97-1068-454b-97dc-656fe9d28a8eCited by top-tier papers7
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- Predicting a Protein's Stability under a Million MutationsJeffrey Ouyang-Zhang, Daniel Jesus Diaz, Adam R. Klivans, Philipp KrähenbühlNeurIPS 2023 · 35 citations
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