AI Article Synopsis

  • Current short-read AIRR-seq methods have limitations in resolving the constant (C) region of antibody transcripts, prompting the development of a new approach called FLAIRR-seq, which achieves 99.99% accuracy in generating human antibody heavy chain transcripts.
  • FLAIRR-seq was validated against standard methods, showing comparable results while revealing previously undocumented heavy chain gene features and enabling detailed characterization of antibody gene diversity.
  • This new method identified 32 unique IGHC alleles in ten individuals, with 87% being uncharacterized, thus providing the most comprehensive analysis of antibody repertoires to date.

Article 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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10152037PMC
http://dx.doi.org/10.4049/jimmunol.2200825DOI Listing

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