Fold-CP: A Context Parallelism Framework for Biomolecular Modeling
作者
Authors
Dejun Lin|Simon Chu|Vishanth Iyer|Youhan Lee|John St John|Kevin Boyd|Brian Roland|Xiaowei Ren|Guoqing Zhou|Zhonglin Cao|Polina Binder|Yuliya Zhautouskaya|Jakub Zakrzewski|Maximilian Stadler|Kyle Gion|Yuxing Peng|Xi Chen|Tianjing Zhang|Philipp Junk|Michelle Dimon|Paweł Gniewek|Fabian Ortega|McKinley Polen|Ivan Grubisic|Ali Bashir|Graham Holt|Danny Kovtun|Matthias Grass|Luca Naef|Rui Wang|Jian Peng|Anthony Costa|Saee Paliwal|Eddie Calleja|Timur Rvachov|Neha Tadimeti|Roy Tal|Emine Kucukbenli
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2026
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英国United Kingdom
📝 摘要
Abstract
Understanding cellular machinery requires atomic-scale reconstruction of large biomolecular assemblies. However, predicting the structures of these systems has been constrained by hardware memory requirements of models like AlphaFold 3, imposing a practical ceiling of a few thousand residues that can be processed on a single GPU. Here we present NVIDIA BioNeMo Fold-CP, a context parallelism framework that overcomes this barrier by distributing the inference and training pipelines of co-folding models across multiple GPUs. We use the Boltz models as open source reference architectures and implement custom multidimensional primitives that efficiently parallelize both the dense triangular updates and the irregular, data-dependent pattern of window-batched local attention. Our approach achieves efficient memory scaling; for an N-token input distributed across P GPUs, per-device memory scales as $O(N^2/P)$, enabling the structure prediction of assemblies exceeding 30,000 residues on 64 NVIDIA B300 GPUs. We demonstrate the scientific utility of this approach through successful developer use cases: Fold-CP enabled the scoring of over 90% of Comprehensive Resource of Mammalian protein complexes (CORUM) database, as well as folding of disease-relevant PI4KA lipid kinase complex bound to an intrinsically disordered region without cropping. By providing a scalable pathway for modeling massive systems with full global context, Fold-CP represents a significant step toward the realization of a virtual cell.
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