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HeteroTCR: A heterogeneous graph neural network-based method for predicting peptide-TCR interaction

Communications Biology, ISSN: 2399-3642, Vol: 7, Issue: 1, Page: 684
2024
  • 1
    Citations
  • 0
    Usage
  • 8
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    1
  • Captures
    8
  • Mentions
    1
    • News Mentions
      1
      • 1

Most Recent News

Tsinghua University Reports Findings in Biology (HeteroTCR: A heterogeneous graph neural network-based method for predicting peptide-TCR interaction)

2024 JUN 18 (NewsRx) -- By a News Reporter-Staff News Editor at Network Daily News -- New research on Life Sciences - Biology is the

Article Description

Identifying interactions between T-cell receptors (TCRs) and immunogenic peptides holds profound implications across diverse research domains and clinical scenarios. Unsupervised clustering models (UCMs) cannot predict peptide-TCR binding directly, while supervised predictive models (SPMs) often face challenges in identifying antigens previously unencountered by the immune system or possessing limited TCR binding repertoires. Therefore, we propose HeteroTCR, an SPM based on Heterogeneous Graph Neural Network (GNN), to accurately predict peptide-TCR binding probabilities. HeteroTCR captures within-type (TCR-TCR or peptide-peptide) similarity information and between-type (peptide-TCR) interaction insights for predictions on unseen peptides and TCRs, surpassing limitations of existing SPMs. Our evaluation shows HeteroTCR outperforms state-of-the-art models on independent datasets. Ablation studies and visual interpretation underscore the Heterogeneous GNN module’s critical role in enhancing HeteroTCR’s performance by capturing pivotal binding process features. We further demonstrate the robustness and reliability of HeteroTCR through validation using single-cell datasets, aligning with the expectation that pMHC-TCR complexes with higher predicted binding probabilities correspond to increased binding fractions.

Bibliographic Details

Yu, Zilan; Jiang, Mengnan; Lan, Xun

Springer Science and Business Media LLC

Medicine; Biochemistry, Genetics and Molecular Biology; Agricultural and Biological Sciences

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