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Updated: Nov 19, 2025

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition
Published on: October 9, 2014
The evolution of alternative splicing in glioblastoma under therapy
Lin Wang1,2, Karin Shamardani1,2, Husam Babikir1,2
1Department of Neurological Surgery, University of California, San Francisco, 1450 3rd Street, San Francisco, CA, 94158, USA.
Background:
Alternative splicing is a rich source of tumor-specific neoantigen targets for immunotherapy. This holds promise for glioblastomas (GBMs), the most common primary tumors of the adult brain, which are resistant to standard-of-care therapy. Although most clinical trials enroll patients at recurrence, most preclinical studies have been done with specimens from primary disease. There are limited expression data from GBMs at recurrence and surprisingly little is known about the evolution of splicing patterns under therapy.
Result:
We profile 37 primary-recurrent paired human GBM specimens via RNA sequencing. We describe the landscape of alternative splicing in GBM at recurrence and contrast that to primary and non-malignant brain-tissue specimens. By screening single-cell atlases, we identify cell-type-specific splicing patterns and novel splicing events in cell-surface proteins that are suitable targets for engineered T cell therapies. We identify recurrent-specific isoforms of mitogen-activated kinase pathway genes that enhance invasiveness and are preferentially expressed by stem-like cells.
Conclusion:
These studies shed light on gene expression in recurrent GBM and identify novel targets for therapeutic development.
Insights
Alternative splicing in glioblastoma (GBM) offers new immunotherapy targets. This study reveals splicing changes in recurrent GBM, identifying novel cell-surface protein targets for engineered T cell therapies.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Alternative splicing generates tumor-specific neoantigens for immunotherapy.
- Glioblastomas (GBMs) are brain tumors resistant to standard therapies.
- Limited data exists on recurrent GBM splicing patterns under therapy.
Purpose of the Study:
- Profile alternative splicing in recurrent GBM.
- Identify novel therapeutic targets for glioblastoma.
Main Methods:
- RNA sequencing of 37 primary-recurrent paired human GBM specimens.
- Analysis of splicing patterns in primary, recurrent, and non-malignant brain tissues.
- Screening of single-cell atlases for cell-type-specific splicing events.
Main Results:
- Characterized the alternative splicing landscape in recurrent GBM.
- Identified cell-surface protein splicing events as potential targets for engineered T cell therapies.
- Discovered recurrent-specific isoforms in mitogen-activated kinase pathway genes that increase invasiveness.
Conclusions:
- Shed light on gene expression in recurrent GBM.
- Identified novel targets for glioblastoma therapeutic development.
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