BMP2 and BMP7 cooperate with H3.3K27M to promote quiescence and invasiveness in pediatric diffuse midline gliomas

Author:

Huchedé Paul1,Meyer Swann1,Berthelot Clément1,Hamadou Maud1,Bertrand-Chapel Adrien1ORCID,Rakotomalala Andria2,Manceau Line3,Tomine Julia1,Lespinasse Nicolas1,Lewandowski Paul2,Cordier-Bussat Martine1,Broutier Laura1,Dutour Aurélie1,Rochet Isabelle4,Blay Jean-Yves1ORCID,Degletagne Cyril5,Attignon Valéry5,Montero-Carcaboso Angel6,Le Grand Marion7,Pasquier Eddy7,Vasiljevic Alexandre4,Gilardi-Hebenstreit Pascale3,Meignan Samuel2,Leblond Pierre18,Ribes Vanessa3ORCID,Cosset Erika9,Castets Marie1

Affiliation:

1. Childhood Cancer & Cell Death (C3) team, LabEx DEVweCAN, Institut Convergence Plascan, Centre Léon Bérard, Centre de Recherche en Cancérologie de Lyon (CRCL), Université Claude Bernard Lyon 1

2. University of Lille, CNRS, Inserm, CHU Lille, UMR9020-U1277-CANTHER Cancer Heterogeneity Plasticity and Resistance to Therapies, Centre Oscar Lambret

3. Université Paris Cité, CNRS, Institut Jacques Monod

4. Multisite Institute of Pathology, Groupement Hospitalier Est du CHU de Lyon, Hôpital Femme-Mère-Enfant

5. Platform of Cancer Genomics, Centre Léon Bérard

6. Preclinical Therapeutics and Drug Delivery Research Program, Department of Oncology, Hospital Sant Joan de Déu

7. Centre de Recherche en Cancérologie de Marseille (CRCM), Université Aix-Marseille, Institut Paoli-Calmettes, Centre de Lutte Contre le Cancer de la région PACA

8. Department of Pediatric Oncology, Institute of Pediatric Hematology and Oncology (IHOPe), Centre Léon Bérard

9. GLIMMER Of lIght (GLIoblastoma MetabolisM, HetERogeneity, and OrganoIds) team, Centre Léon Bérard, Centre de Recherche en Cancérologie de Lyon (CRCL), Université Claude Bernard Lyon 1

Abstract

Pediatric diffuse midline gliomas (pDMG) are an aggressive type of childhood cancer with a fatal outcome. Their major epigenetic determinism has become clear, notably with the identification of K27M mutations in histone H3. However, the synergistic oncogenic mechanisms that induce and maintain tumor cell phenotype have yet to be deciphered. In 20 to 30% of cases, these tumors have an altered BMP signaling pathway with an oncogenic mutation on the BMP type I receptor ALK2, encoded by ACVR1. However, the potential impact of the BMP pathway in tumors non-mutated for ACVR1 is less clear. By integrating bulk, single-cell and spatial transcriptomic data, we show here that the BMP signaling pathway is activated at similar levels between ACVR1 wild-type and mutant tumors and identify BMP2 and BMP7 as putative activators of the pathway in a specific subpopulation of cells. By using both pediatric isogenic glioma lines genetically modified to overexpress H3.3K27M and patients-derived DIPG cell lines, we demonstrate that BMP2/7 synergizes with H3.3K27M to induce a transcriptomic rewiring associated with a quiescent but invasive cell state. These data suggest a generic oncogenic role for the BMP pathway in gliomagenesis of pDMG and pave the way for specific targeting of downstream effectors mediating the K27M/BMP crosstalk.

Publisher

eLife Sciences Publications, Ltd

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