The development of a custom RNA-sequencing panel for the identification of predictive and diagnostic biomarkers in glioma
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Published:2024-02-16
Issue:1
Volume:167
Page:75-88
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ISSN:0167-594X
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Container-title:Journal of Neuro-Oncology
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language:en
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Short-container-title:J Neurooncol
Author:
Shirai Yukina,Ueno Toshihide,Kojima Shinya,Ikeuchi Hiroshi,Kitada Rina,Koyama Takafumi,Takahashi Fumiyuki,Takahashi Kazuhisa,Ichimura Koichi,Yoshida Akihiko,Sugino Hirokazu,Mano Hiroyuki,Narita Yoshitaka,Takahashi Masamichi,Kohsaka Shinji
Abstract
Abstract
Purpose
Various molecular profiles are needed to classify malignant brain tumors, including gliomas, based on the latest classification criteria of the World Health Organization, and their poor prognosis necessitates new therapeutic targets. The Todai OncoPanel 2 RNA Panel (TOP2-RNA) is a custom-target RNA-sequencing (RNA-seq) using the junction capture method to maximize the sensitivity of detecting 455 fusion gene transcripts and analyze the expression profiles of 1,390 genes. This study aimed to classify gliomas and identify their molecular targets using TOP2-RNA.
Methods
A total of 124 frozen samples of malignant gliomas were subjected to TOP2-RNA for classification based on their molecular profiles and the identification of molecular targets.
Results
Among 55 glioblastoma cases, gene fusions were detected in 11 cases (20%), including novel MET fusions. Seven tyrosine kinase genes were found to be overexpressed in 15 cases (27.3%). In contrast to isocitrate dehydrogenase (IDH) wild-type glioblastoma, IDH-mutant tumors, including astrocytomas and oligodendrogliomas, barely harbor fusion genes or gene overexpression. Of the 34 overexpressed tyrosine kinase genes, MDM2 and CDK4 in glioblastoma, 22 copy number amplifications (64.7%) were observed. When comparing astrocytomas and oligodendrogliomas in gene set enrichment analysis, the gene sets related to 1p36 and 19q were highly enriched in astrocytomas, suggesting that regional genomic DNA copy number alterations can be evaluated by gene expression analysis.
Conclusions
TOP2-RNA is a highly sensitive assay for detecting fusion genes, exon skipping, and aberrant gene expression. Alterations in targetable driver genes were identified in more than 50% of glioblastoma. Molecular profiling by TOP2-RNA provides ample predictive, prognostic, and diagnostic biomarkers that may not be identified by conventional assays and, therefore, is expected to increase treatment options for individual patients with glioma.
Funder
Grant-in-Aid for Rare Cancer Research
Publisher
Springer Science and Business Media LLC
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