Article Synopsis

  • Understanding biomolecular interactions is crucial for drug discovery and protein design, and this paper presents Boltz-1, an open-source deep learning model with innovations that achieve high accuracy in predicting 3D structures of biomolecular complexes.
  • Boltz-1 competes with top commercial models on various benchmarks, setting a new standard for accessible tools in structural biology.
  • The paper introduces Boltz-steering, a technique to improve model predictions by addressing inaccuracies, and aims to promote global collaboration by sharing all related code and data under an open license.

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Article Abstract

Understanding biomolecular interactions is fundamental to advancing fields like drug discovery and protein design. In this paper, we introduce Boltz-1, an open-source deep learning model incorporating innovations in model architecture, speed optimization, and data processing achieving Alphafold3-level accuracy in predicting the 3D structures of biomolecular complexes. Boltz-1 demonstrates a performance on-par with state-of-the-art commercial models on a range of diverse benchmarks, setting a new benchmark for commercially accessible tools in structural biology. Further, we push the boundary of capabilities of these models with Boltz-steering, a new inference time steering technique that is able to fix hallucinations and non-physical predictions from the models. By releasing the training and inference code, model weights, datasets, and benchmarks under the MIT open license, we aim to foster global collaboration, accelerate discoveries, and provide a robust platform for advancing biomolecular modeling.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11601547PMC
http://dx.doi.org/10.1101/2024.11.19.624167DOI Listing

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Article Synopsis
  • Understanding biomolecular interactions is crucial for drug discovery and protein design, and this paper presents Boltz-1, an open-source deep learning model with innovations that achieve high accuracy in predicting 3D structures of biomolecular complexes.
  • Boltz-1 competes with top commercial models on various benchmarks, setting a new standard for accessible tools in structural biology.
  • The paper introduces Boltz-steering, a technique to improve model predictions by addressing inaccuracies, and aims to promote global collaboration by sharing all related code and data under an open license.
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