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Iterative Refinement Graph Neural Network for Antibody Sequence-Structure Co-design

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arxiv 2110.04624 v3 pith:6XE5JZOL submitted 2021-10-09 q-bio.BM cs.LG

classification q-bio.BMcs.LG
keywords structureantibodiescdrsmodelsequenceantibodybindingco-design
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Antibodies are versatile proteins that bind to pathogens like viruses and stimulate the adaptive immune system. The specificity of antibody binding is determined by complementarity-determining regions (CDRs) at the tips of these Y-shaped proteins. In this paper, we propose a generative model to automatically design the CDRs of antibodies with enhanced binding specificity or neutralization capabilities. Previous generative approaches formulate protein design as a structure-conditioned sequence generation task, assuming the desired 3D structure is given a priori. In contrast, we propose to co-design the sequence and 3D structure of CDRs as graphs. Our model unravels a sequence autoregressively while iteratively refining its predicted global structure. The inferred structure in turn guides subsequent residue choices. For efficiency, we model the conditional dependence between residues inside and outside of a CDR in a coarse-grained manner. Our method achieves superior log-likelihood on the test set and outperforms previous baselines in designing antibodies capable of neutralizing the SARS-CoV-2 virus.

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Cited by 2 Pith papers

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

  1. Conditionally Site-Independent Neural Evolution of Antibody Sequences

    cs.LG 2026-02 conditional novelty 5.0 of 10

    A neural continuous-time Markov model of antibody affinity maturation that beats language models on fitness prediction and steers sampling toward antigen-specific binders.

  2. Antibody Design and Optimization with Multi-scale Equivariant Graph Diffusion Models for Accurate Complex Antigen Binding

    cs.LG 2025-06 conditional novelty 5.0 of 10

    AbMEGD, a fusion of ViS-MP and IPA inside a diffusion process, reports modest CDR-H3 gains over DiffAb on SAbDab.

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