Indu Khatri

Leiden University Medical Center
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Netherlands

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Articles (10)

Determining epitope specificity of T-cell receptors with transformers

Summary T-cell receptors (TCRs) on T cells recognize and bind to epitopes presented by the major histocompatibility complex in case of an infection or cancer. However, the high diversity of TCRs, as well as their unique and complex binding mechanisms underlying epitope recognition, make it difficult to predict the binding between TCRs and epitopes. Here, we present the utility of transformers, a deep learning strategy that incorporates an attention mechanism that learns the informative features, and show that these models pre-trained on a large set of protein sequences outperform current strategies. We compared three pre-trained auto-encoder transformer models (ProtBERT, ProtAlbert, and ProtElectra) and one pre-trained auto-regressive transformer model (ProtXLNet) to predict the binding specificity of TCRs to 25 epitopes from the VDJdb database (human and murine). Two additional modifications were performed to incorporate gene usage of the TCRs in the four transformer models. Of all 12 transformer implementations (four models with three different modifications), a modified version of the ProtXLNet model could predict TCR–epitope pairs with the highest accuracy (weighted F1 score 0.55 simultaneously considering all 25 epitopes). The modification included additional features representing the gene names for the TCRs. We also showed that the basic implementation of transformers outperformed the previously available methods, i.e. TCRGP, TCRdist, and DeepTCR, developed for the same biological problem, especially for the hard-to-classify labels. We show that the proficiency of transformers in attention learning can be made operational in a complex biological setting like TCR binding prediction. Further ingenuity in utilizing the full potential of transformers, either through attention head visualization or introducing additional features, can extend T-cell research avenues. Availability and implementation Data and code are available on https://github.com/InduKhatri/tcrformer.

Year:

2023

Collaborators (11)

Giacomo Corleone

-

ITALY

Erik van den Akker

Delft University of Technology

NETHERLANDS

Martin Perez-Andres

Professor

Universidad de Salamanca

SPAIN

Jacques J.M. van Dongen

Universidad de Salamanca

SPAIN

Davis McCarthy

Lab Head

St Vincent's Institute of Medical Research

AUSTRALIA

Abhishek Garg

Professor at KU Leuven

KU Leuven

BELGIUM

Catalina A. Vallejos

-

UNITED KINGDOM

Kieran Campbell

Assistant Professor

University of Toronto

CANADA

Ion I. Măndoiu

University of Connecticut

UNITED STATES

Jannie Borst

Leiden University Medical Center

NETHERLANDS

Yanling Xiao

Assistant Professor

Leiden University Medical Center

NETHERLANDS
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