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Designing meaningful continuous representations of T cell receptor sequences with deep generative models

Author

Listed:
  • Allen Y. Leary

    (Regeneron Pharmaceuticals Inc.)

  • Darius Scott

    (Regeneron Pharmaceuticals Inc.)

  • Namita T. Gupta

    (Regeneron Pharmaceuticals Inc.)

  • Janelle C. Waite

    (Regeneron Pharmaceuticals Inc.)

  • Dimitris Skokos

    (Regeneron Pharmaceuticals Inc.)

  • Gurinder S. Atwal

    (Regeneron Pharmaceuticals Inc.)

  • Peter G. Hawkins

    (Regeneron Pharmaceuticals Inc.)

Abstract

T Cell Receptor (TCR) antigen binding underlies a key mechanism of the adaptive immune response yet the vast diversity of TCRs and the complexity of protein interactions limits our ability to build useful low dimensional representations of TCRs. To address the current limitations in TCR analysis we develop a capacity-controlled disentangling variational autoencoder trained using a dataset of approximately 100 million TCR sequences, that we name TCR-VALID. We design TCR-VALID such that the model representations are low-dimensional, continuous, disentangled, and sufficiently informative to provide high-quality TCR sequence de novo generation. We thoroughly quantify these properties of the representations, providing a framework for future protein representation learning in low dimensions. The continuity of TCR-VALID representations allows fast and accurate TCR clustering and is benchmarked against other state-of-the-art TCR clustering tools and pre-trained language models.

Suggested Citation

  • Allen Y. Leary & Darius Scott & Namita T. Gupta & Janelle C. Waite & Dimitris Skokos & Gurinder S. Atwal & Peter G. Hawkins, 2024. "Designing meaningful continuous representations of T cell receptor sequences with deep generative models," Nature Communications, Nature, vol. 15(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-48198-0
    DOI: 10.1038/s41467-024-48198-0
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    References listed on IDEAS

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    1. Nicki Skafte Detlefsen & Søren Hauberg & Wouter Boomsma, 2022. "Learning meaningful representations of protein sequences," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
    2. Yannick Simoni & Etienne Becht & Michael Fehlings & Chiew Yee Loh & Si-Lin Koo & Karen Wei Weng Teng & Joe Poh Sheng Yeong & Rahul Nahar & Tong Zhang & Hassen Kared & Kaibo Duan & Nicholas Ang & Micha, 2018. "Bystander CD8+ T cells are abundant and phenotypically distinct in human tumour infiltrates," Nature, Nature, vol. 557(7706), pages 575-579, May.
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