CocoRNA: Collective RNA Design with Cooperative Multi-agent Reinforcement Learning
Tianmeng Hu, Biao Luo, Ke Li
摘要
Designing RNA sequences that reliably fold into specific secondary structures is essential for understanding their biological functions but remains a challenging computational problem. We propose CocoRNA, a cooperative multi-agent reinforcement learning framework for RNA inverse design. CocoRNA simplifies the design task by decomposing it into smaller sub-problems, each solved collaboratively by multiple agents. This approach reduces the complexity of the problem and improves the exploration of design policies. During training, a centralized critic uses global structural information to guide the agents, enabling them to jointly optimize their design strategies. As a result, CocoRNA learns high-quality RNA design policies that generalize effectively to unseen structures without additional training. Experiments on the Rfam dataset demonstrate that CocoRNA substantially outperforms state-of-the-art methods in both success rate and design speed. Further experiments on other biological sequence design tasks highlight the effectiveness and broad potential of CocoRNA for complex design tasks.
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它引用的顶会 Paper6
- Exploratory Combinatorial Optimization with Reinforcement LearningThomas D. Barrett, William R. Clements, Jakob N. Foerster, A. I. LvovskyAAAI 2020 · 被引用 218 次
- Model-based reinforcement learning for biological sequence designChristof Angermüller, David Dohan, David Belanger, Ramya Deshpande 等ICLR 2020 · 被引用 159 次
- Design-Bench: Benchmarks for Data-Driven Offline Model-Based OptimizationBrandon Trabucco, Xinyang Geng, Aviral Kumar, Sergey LevineICML 2022 · 被引用 126 次
- RIDER: 3D RNA Inverse Design with Reinforcement Learning-Guided DiffusionTianmeng Hu, Yongzheng Cui, Biao Luo, Ke LiICLR 2026 · 被引用 1 次
- Bridging Sequence-Structure Alignment in RNA Foundation ModelsHeng Yang, Renzhi Chen, Ke LiAAAI 2025
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