FLAIRR-Seq: A Method for Single-Molecule Resolution of Near Full-Length Antibody H Chain Repertoires

Author:

Ford Easton E.12ORCID,Tieri David2ORCID,Rodriguez Oscar L.2,Francoeur Nancy J.3ORCID,Soto Juan3,Kos Justin T.2ORCID,Peres Ayelet45ORCID,Gibson William S.2ORCID,Silver Catherine A.2,Deikus Gintaras3ORCID,Hudson Elizabeth2,Woolley Cassandra R.1ORCID,Beckmann Noam3,Charney Alexander3,Mitchell Thomas C.1ORCID,Yaari Gur45,Sebra Robert P.3,Watson Corey T.2ORCID,Smith Melissa L.2ORCID

Affiliation:

1. *Department of Microbiology and Immunology, University of Louisville School of Medicine, Louisville, KY

2. †Department of Biochemistry and Molecular Genetics, University of Louisville School of Medicine, Louisville, KY

3. ‡Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai, New York City, NY

4. §Faculty of Engineering, Bar Ilan University, Ramat Gan, Israel

5. ¶Bar Ilan Institute of Nanotechnology and Advanced Materials, Bar Ilan University, Ramat Gan, Israel

Abstract

Abstract Current Adaptive Immune Receptor Repertoire sequencing (AIRR-seq) using short-read sequencing strategies resolve expressed Ab transcripts with limited resolution of the C region. In this article, we present the near-full-length AIRR-seq (FLAIRR-seq) method that uses targeted amplification by 5′ RACE, combined with single-molecule, real-time sequencing to generate highly accurate (99.99%) human Ab H chain transcripts. FLAIRR-seq was benchmarked by comparing H chain V (IGHV), D (IGHD), and J (IGHJ) gene usage, complementarity-determining region 3 length, and somatic hypermutation to matched datasets generated with standard 5′ RACE AIRR-seq using short-read sequencing and full-length isoform sequencing. Together, these data demonstrate robust FLAIRR-seq performance using RNA samples derived from PBMCs, purified B cells, and whole blood, which recapitulated results generated by commonly used methods, while additionally resolving H chain gene features not documented in IMGT at the time of submission. FLAIRR-seq data provide, for the first time, to our knowledge, simultaneous single-molecule characterization of IGHV, IGHD, IGHJ, and IGHC region genes and alleles, allele-resolved subisotype definition, and high-resolution identification of class switch recombination within a clonal lineage. In conjunction with genomic sequencing and genotyping of IGHC genes, FLAIRR-seq of the IgM and IgG repertoires from 10 individuals resulted in the identification of 32 unique IGHC alleles, 28 (87%) of which were previously uncharacterized. Together, these data demonstrate the capabilities of FLAIRR-seq to characterize IGHV, IGHD, IGHJ, and IGHC gene diversity for the most comprehensive view of bulk-expressed Ab repertoires to date.

Funder

HHS | National Institutes of Health

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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