Haplotype Analysis of the T-Cell Receptor Beta (TCRB) Locus by Long-amplicon TCRB Repertoire Sequencing

Author:

Looney Timothy J1,Duose Dzifa Y12,Lowman Geoffrey1,Linch Elizabeth1,Hajjar Joud13,Topacio-Hall Denise1,Xu Mingxuan12,Zheng Jianping1,Alshawa Anas12,Tapia Coya12,Stephen Bettzy12,Wang Linghua12,Meric-Bernstam Funda12,Miller Lauren1,Glavin Alexander1,Lin Lifeng1,Gong Jing12,Conroy Jeffrey145,Morrison Carl145,Hyland Fiona1,Naing Aung12

Affiliation:

1. Thermo Fisher Scientific, Austin, TX, USA

2. The University of Texas MD Anderson Cancer Center, Houston, TX, USA

3. Department of Pediatrics, Section of Immunology, Allergy, and Retrovirology, Texas Children's Hospital, Baylor College of Medicine, Houston, TX, USA

4. OmniSeq, Inc, Buffalo, NY, USA

5. Roswell Park Comprehensive Cancer Center, Buffalo, NY, USA

Abstract

Abstract Background: Polymorphism within the human T-cell receptor beta variable (TRBV) gene has been proposed as a risk factor for autoimmune disease and immune-related adverse events (IRAEs) during immunotherapy. Previous efforts to evaluate TRBV polymorphism by whole genome sequencing have been hampered by the repetitive nature of the T-cell receptor beta (TCRB) locus. We present a novel long-amplicon TCRB repertoire sequencing approach to enable TRBV haplotype analysis from peripheral blood. Methods: Peripheral blood leukocyte total RNA from 81 Caucasians was used for sequencing of TCRB chains via the Oncomine TCRB-LR assay (amplicon spanning CDR1, 2 and 3) and the Ion Gene Studio S5. VDJ rearrangements were annotated by comparison to the IMGT database, then mined to construct TRBV allele profiles for each individual including, where detected, novel alleles not present in the ImMunoGeneTics (IMGT) database. Finally, TRBV allele profiles were subjected to principal component analysis and k-means clustering to identify TRBV allele haplotypes. Results: Clustering analysis revealed the presence of six major sets of coincident TRBV alleles, which we term haplotype groups. Allelic diversity varied markedly across haplotype groups, with approximately one third of the cohort showing limited TRBV allelic diversity and few uncommon alleles compared to members of other groups. Analysis revealed 37 putatively novel TRBV alleles that are absent from the IMGT database. Conclusion: We demonstrate a straightforward and cost-efficient method for TRBV haplotype analysis from long-amplicon TCRB sequencing data.

Publisher

Innovative Healthcare Institute

Subject

Cancer Research,Oncology,Immunology,Immunology and Allergy

Reference25 articles.

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