Integrative multi-omics reveals two biologically distinct groups of pilocytic astrocytoma

Author:

Picard Daniel,Felsberg Jörg,Langini Maike,Stachura Paweł,Qin Nan,Macas Jadranka,Reiss Yvonne,Bartl Jasmin,Selt Florian,Sigaud Romain,Meyer Frauke-D.,Stefanski Anja,Stühler Kai,Roque Lucia,Roque Rafael,Pandyra Aleksandra A.,Brozou Triantafyllia,Knobbe-Thomsen Christiane,Plate Karl H.,Roesch Alexander,Milde Till,Reifenberger Guido,Leprivier Gabriel,Faria Claudia C.,Remke MarcORCID

Abstract

AbstractPilocytic astrocytoma (PA), the most common pediatric brain tumor, is driven by aberrant mitogen-activated protein kinase signaling most commonly caused by BRAF gene fusions or activating mutations. While 5-year overall survival rates exceed 95%, tumor recurrence or progression constitutes a major clinical challenge in incompletely resected tumors. Here, we used similarity network fusion (SNF) analysis in an integrative multi-omics approach employing RNA transcriptomic and mass spectrometry-based proteomic profiling to molecularly characterize PA tissue samples from 62 patients. Thereby, we uncovered that PAs segregated into two molecularly distinct groups, namely, Group 1 and Group 2, which were validated in three non-overlapping cohorts. Patients with Group 1 tumors were significantly younger and showed worse progression-free survival compared to patients with group 2 tumors. Ingenuity pathways analysis (IPA) and gene set enrichment analysis (GSEA) revealed that Group 1 tumors were enriched for immune response pathways, such as interferon signaling, while Group 2 tumors showed enrichment for action potential and neurotransmitter signaling pathways. Analysis of immune cell-related gene signatures showed an enrichment of infiltrating T Cells in Group 1 versus Group 2 tumors. Taken together, integrative multi-omics of PA identified biologically distinct and prognostically relevant tumor groups that may improve risk stratification of this single pathway driven tumor type.

Funder

Deutsche Forschungsgemeinschaft

Universitätsklinikum Düsseldorf. Anstalt öffentlichen Rechts

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,Neurology (clinical),Pathology and Forensic Medicine

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