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Paper · arXiv 2403.03234

Caduceus: Bi-Directional Equivariant Long-Range DNA Sequence Modeling

Yair Schiff, Chia-Hsiang Kao, Aaron Gokaslan, Tri Dao, Albert Gu, Volodymyr Kuleshov

13 upvotesMarch 5, 2024arXiv 预印本
AI 摘要

A new family of DNA language models, Caduceus, supports bi-directionality and reverse complementarity, achieving superior performance on long-range genomic sequence modeling tasks.

sequence modelinggenomic sequenceslong-range token interactionsreverse complementarityMamba blockBiMambaMambaDNARC equivariantlong-range DNA language modelspre-trainingfine-tuningvariant effect prediction

Abstract

Large-scale sequence modeling has sparked rapid advances that now extend into biology and genomics. However, modeling genomic sequences introduces challenges such as the need to model long-range token interactions, the effects of upstream and downstream regions of the genome, and the reverse complementarity (RC) of DNA. Here, we propose an architecture motivated by these challenges that builds off the long-range Mamba block, and extends it to a BiMamba component that supports bi-directionality, and to a MambaDNA block that additionally supports RC equivariance. We use MambaDNA as the basis of Caduceus, the first family of RC equivariant bi-directional long-range DNA language models, and we introduce pre-training and fine-tuning strategies that yield Caduceus DNA foundation models. Caduceus outperforms previous long-range models on downstream benchmarks; on a challenging long-range variant effect prediction task, Caduceus exceeds the performance of 10x larger models that do not leverage bi-directionality or equivariance.

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