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Updated: Jul 5, 2025

Predictive Immune Modeling of Solid Tumors
Published on: February 25, 2020
Discovery of immunotherapy targets for pediatric solid and brain tumors by exon-level expression
Timothy I Shaw1, Jessica Wagner2, Liqing Tian1
1Department of Computational Biology, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.
Abstract:
Immunotherapy with CAR T cells for pediatric solid and brain tumors is constrained by available targetable antigens. Cancer-specific exons (CSE) present a promising reservoir of targets; however, these have not been explored and validated systematically in a pan-cancer fashion. To identify CSE targets, we analyzed 1,532 RNA-seq datasets from 16 types of pediatric solid and brain tumors for comparison with normal tissues using a newly developed workflow. We found 2,933 exons in 157 genes encoding proteins of the surfaceome or matrisome with high cancer specificity either at the gene (n=148) or the alternatively spliced (AS) isoform (n=9) level. Expression of selected AS targets, including the EDB domain of FN1 (EDB), and gene targets, such as COL11A1, were validated in pediatric PDX tumors. We generated CAR T cells specific to EDB or COL11A1 and demonstrated that COL11A1-CAR T-cells have potent antitumor activity. The full target list, explorable via an interactive web portal (https://cseminer.stjude.org/), provides a rich resource for developing immunotherapy of pediatric solid and brain tumors using gene or AS targets with high expression specificity in cancer.
Insights
Researchers identified novel cancer-specific exons for immunotherapy targets in pediatric solid and brain tumors. CAR T-cells targeting COL11A1 showed potent antitumor activity, offering new hope for treating these challenging cancers.
Area of Science:
- Oncology
- Immunotherapy
- Genomics
Background:
- CAR T-cell immunotherapy for pediatric solid and brain tumors faces limitations due to a scarcity of targetable antigens.
- Cancer-specific exons (CSEs) represent a largely unexplored source of highly specific tumor targets.
Conclusions:
- CSEs provide a rich resource for developing novel immunotherapies for pediatric solid and brain tumors.
- COL11A1 is a validated target demonstrating efficacy with CAR T-cell therapy.
- An interactive web portal (https://cseminer.stjude.org/) offers access to identified CSE targets for further research and development.
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