FUME-TCRseq Enables Sensitive and Accurate Sequencing of the T-cell Receptor from Limited Input of Degraded RNA

Publication date

2024-05-15

Authors

Baker, Ann Marie
Nageswaran, Gayathri
Nenclares, Pablo
Ronel, Tahel
Smith, Kane
Kimberley, Christopher
Laclé, Miangela Marie
Bhide, Shreerang
Harrington, Kevin J.
Melcher, Alan

Editors

Advisors

Supervisors

Document Type

Article

Collections

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License

cc_by

Abstract

Genomic analysis of the T-cell receptor (TCR) reveals the strength, breadth, and clonal dynamics of the adaptive immune response to pathogens or cancer. The diversity of the TCR repertoire, however, means that sequencing is technically challenging, particularly for samples with low-quality, degraded nucleic acids. Here, we developed and validated FUME-TCRseq, a robust and sensitive RNA-based TCR sequencing methodology that is suitable for formalin-fixed paraffin-embedded samples and low amounts of input material. FUME-TCRseq incorporates unique molecular identifiers into each molecule of cDNA, allowing correction for sequencing errors and PCR bias. Using RNA extracted from colorectal and head and neck cancers to benchmark the accuracy and sensitivity of FUME-TCRseq against existing methods demonstrated excellent concordance between the datasets. Furthermore, FUME-TCRseq detected more clonotypes than a commercial RNA-based alternative, with shorter library preparation time and significantly lower cost. The high sensitivity and the ability to sequence RNA of poor quality and limited amount enabled quantitative analysis of small numbers of cells from archival tissue sections, which is not possible with other methods. Spatially resolved FUME-TCRseq analysis of colorectal cancers using macrodissected archival samples revealed the shifting T-cell landscapes at the transition to an invasive phenotype and between tumor subclones containing distinct driver alterations. In summary, FUME-TCRseq represents an accurate, sensitive, and low-cost tool for the characterization of T-cell repertoires, particularly in samples with low-quality RNA that have not been accessible using existing methodology.

Keywords

Oncology, Cancer Research

Citation

Baker, A M, Nageswaran, G, Nenclares, P, Ronel, T, Smith, K, Kimberley, C, Laclè, M M, Bhide, S, Harrington, K J, Melcher, A, Rodriguez-Justo, M, Chain, B & Graham, T A 2024, 'FUME-TCRseq Enables Sensitive and Accurate Sequencing of the T-cell Receptor from Limited Input of Degraded RNA', Cancer Research, vol. 84, no. 10, pp. 1560-1569. https://doi.org/10.1158/0008-5472.CAN-23-3340