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April 5, 2026Cancer Research0 citations

Abstract 5915: Utility of long-read RNA-sequencing for isoform and fusion discovery in lung cancer

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KLKevin M. LevineFred Hutch Cancer CenterCFColette FeltonUniversity of California, Santa CruzTDTanvi DamleFred Hutch Cancer Center

Key Points

  • The study aims to enhance understanding of isoform expression and splicing alterations in lung cancer using long-read RNA sequencing.
  • Performed RNA isolation from fresh frozen lung cancer samples.
  • Utilized long-read RNA-sequencing to accurately capture and quantify isoform expression.
  • Applied FLAIR3 to analyze isoforms and phase somatic mutations.
  • Investigated alternative splicing patterns in RAS-pathway genes.
  • Identified increased expression of the minor KRAS isoform, KRAS4A, in tumor samples.
  • Demonstrated integration of KRAS mutations with isoform expressions.
  • Found novel rearrangements in oncogenes like EGFR and deletions of tumor suppressor genes.

Abstract

Abstract Isoform expression is frequently dysregulated in lung cancer via cis-acting splice site mutations or trans-acting mutations in splicing factors such as U2AF1, RBM10, and SF3B1. While prior studies have sought to characterize the isoform landscape in cancers, the short reads of next-generation sequencing platforms, ranging in length from 50-150 bp, preclude the accurate phasing of alternative splicing events across the full transcript length (typically exceeding 1 kb). To provide a more comprehensive and accurate view of expressed isoforms in lung cancer, we performed long-read RNA-sequencing on 32 matched tumor/normal pairs of early stage resected lung adenocarcinoma, four biopsies from tumors that had progressed on targeted therapy treatment, and 14 non-small cell lung cancer cell lines. RNA was isolated from fresh frozen tissue specimens and cDNA prepared using the PacBio Kinnex full-length isoform method. PacBio HiFi data were generated per manufacturer's recommendations at the University of Washington Long Reads Sequencing Center or UC Davis DNA Technologies core. Libraries were sequenced on the PacBio Revio system to a read depth of 10M HiFi reads per sample, providing 80% saturation of known isoforms. FLAIR3 was used to identify and quantify isoforms, including novel isoforms, and phase isoform expression with somatic mutations including SNVs and insertion/deletion mutations. Analysis of alternative splicing patterns in RAS-pathway genes identified increased expression of the minor KRAS isoform, KRAS4A, in tumors compared to normal samples. Phasing of somatic variants enabled integration of KRAS mutation with KRAS isoform expression and validated the previously identified role of KRAS Q61 variants on aberrant KRAS splicing. In addition, we identified deletions predicted to inactivate tumor suppressor genes and identified novel rearrangements in clinically actionable oncogenes including EGFR. Together these data demonstrate the utility of long-read RNA sequencing for accurate and complete isoform characterization in cancer. Citation Format: Kevin Levine, Colette Felton, Tanvi Damle, Christina Baik, Angela Norie Brooks, Alice H. Berger. Utility of long-read RNA-sequencing for isoform and fusion discovery in lung cancer abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 5915.

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Cite This Study

Levine et al. (2026) studied this question.

synapsesocial.com/papers/69d1fe07a79560c99a0a472bhttps://doi.org/10.1158/1538-7445.am2026-5915
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 1501: Cancer gene variant identification and functional interpretation using long-read RNA sequencing with FLAIR32026
  2. 2Abstract 1505: Long-read sequencing of pancreatic adenocarcinoma transcriptome uncovered aberrant isoforms and tumor progression2026
  3. 3Abstract 1789: RNA isoform discovery and quantification with SMART-Seq® mRNA Long Read (v1 and v2) kits2026
  4. 4Long-Read Sequencing Reveals Tumor-Specific Splicing Isoforms as Therapeutic Targets in Non–Small-Cell Lung Cancer2025 · 2 citations
  5. 5Abstract 5924: Single-cell full-length transcriptome of lung cells reveals genetic effects on isoform regulation beyond eQTL2026