Gene regulatory network landscape of Group 3/4 medulloblastoma

Author:

Joshi PiyushORCID,Stelzer Tamina,Okonechnikov KonstantinORCID,Sarropoulos Ioannis,Sepp Mari,Pour-Jamnani Mischan V.,Rademacher Anne,Yamada-Saito Tetsuya,Schneider Céline,Schmidt Julia,Schäfer Philipp,Leiss Kevin,Bortolomeazzi Michele,Mallm Jan-Philipp,da Silva Patricia B.G.,Statz Britta,Wittmann Andrea,Schramm Kathrin,Blattner-Johnson Mirjam,Fiesel Petra,Jones Barbara,Milde Till,Pajtler Kristian,van Tilburg Cornelis M.,Witt Olaf,Rippe Karsten,Korshunov Andrey,Jones David T.W.,Hovestadt Volker,Northcott Paul A.,Thongjuea Supat,Jäger Natalie,Kaessmann Henrik,Pfister Stefan M.,Kutscher Lena M.ORCID

Abstract

AbstractResolving the molecular mechanisms driving childhood brain tumors will uncover tumor-specific vulnerabilities and advance mechanism-of-action-based therapies. Here we describe a continuum of cell-states in Group 3/4 medulloblastomas, the most frequent and fatal cerebellar embryonal tumor subgroups, based on the differential activity of transcription-factor-driven gene networks derived using a comprehensive single-nucleus multi-omic medulloblastoma atlas. We show that Group 3/4 tumor diversity stems from enriched cell-states along four molecular identity axes: photoreceptor, MYC, precursor, and unipolar brush cell-like. We identified a potential role ofPAX6in driving dual Group 3- and Group 4-like tumor trajectories in subtype VII tumors. Our study demonstrates how oncogenic events together with lineage determinants drive Group 3/4 tumor identity away from their original source in the cerebellar unipolar brush cell lineage.

Publisher

Cold Spring Harbor Laboratory

Reference53 articles.

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