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Technical Report of HelixFold3 for Biomolecular Structure Prediction

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arxiv 2408.16975 v3 pith:HHWHAOOA submitted 2024-08-30 q-bio.BM cs.AIcs.LG

classification q-bio.BMcs.AIcs.LG
keywords helixfold3alphafold3biomolecularproteinaccuracyalphafold-multimeralphafold2latest
verification ladder T0 review T1 audit T2 compute T3 formal
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The AlphaFold series has transformed protein structure prediction with remarkable accuracy, often matching experimental methods. AlphaFold2, AlphaFold-Multimer, and the latest AlphaFold3 represent significant strides in predicting single protein chains, protein complexes, and biomolecular structures. While AlphaFold2 and AlphaFold-Multimer are open-sourced, facilitating rapid and reliable predictions, AlphaFold3 remains partially accessible through a limited online server and has not been open-sourced, restricting further development. To address these challenges, the PaddleHelix team is developing HelixFold3, aiming to replicate AlphaFold3's capabilities. Leveraging insights from previous models and extensive datasets, HelixFold3 achieves accuracy comparable to AlphaFold3 in predicting the structures of the conventional ligands, nucleic acids, and proteins. The initial release of HelixFold3 is available as open source on GitHub for academic research, promising to advance biomolecular research and accelerate discoveries. The latest version will be continuously updated on the HelixFold3 web server, providing both interactive visualization and API access.

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Cited by 4 Pith papers

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

  1. Reshaping Biomolecular Structure Prediction through Strategic Conformational Exploration with HelixFold-S1

    q-bio.BM 2025-07 conditional novelty 6.0 of 10

    Guided sampling using predicted inter-chain contacts achieves higher structural accuracy with an order of magnitude fewer samples than unguided sampling.

  2. IntFold: A Controllable Foundation Model for General and Specialized Biomolecular Structure Prediction

    q-bio.BM 2025-07 conditional novelty 6.0 of 10

    The IntFold team reports an AlphaFold-3-class structure prediction model with controllable adapters, achieving comparable benchmark accuracy and improved performance on specialized tasks, but provides no verifiable re...

  3. HelixDesign-Antibody: A Scalable Production-Grade Platform for Antibody Design Built on HelixFold3

    q-bio.BM 2025-07 reject novelty 4.0 of 10

    The paper describes a production antibody design platform built on HelixFold3 and reports that sampling more candidates improves top-ranked metrics, a claim that reduces to trivial sampling statistics.

  4. HelixDesign-Binder: A Scalable Production-Grade Platform for Binder Design Built on HelixFold3

    q-bio.BM 2025-05 conditional novelty 4.0 of 10

    The paper presents a scalable, fully automated binder design pipeline and benchmarks it on six targets using predicted structural and energetic scores.

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