EphrinB2 drives perivascular invasion and proliferation of glioblastoma stem-like cells

Author:

Krusche Benjamin12,Ottone Cristina12,Clements Melanie P12,Johnstone Ewan R34ORCID,Goetsch Katrin12,Lieven Huang25,Mota Silvia G6,Singh Poonam7,Khadayate Sanjay2,Ashraf Azhaar12,Davies Timothy12,Pollard Steven M8,De Paola Vincenzo25,Roncaroli Federico79,Martinez-Torrecuadrada Jorge6,Bertone Paul34,Parrinello Simona12ORCID

Affiliation:

1. Cell Interactions and Cancer Group, MRC Clinical Sciences Centre (CSC), London, United Kingdom

2. Institute of Clinical Sciences (ICS), Faculty of Medicine, Imperial College London, London, United Kingdom

3. Wellcome Trust - Medical Research Council Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom

4. European Molecular Biology Laboratory, European Bioinformatics Institute, Hinxton, United Kingdom

5. Neuroplasticity and Diseases Group, MRC Clinical Sciences, London, United Kingdom

6. Proteomics Unit, Centro Nacional de Investigaciones Oncologicas, Madrid, Spain

7. Department of Histopathology, Imperial College Healthcare Trust, London, United Kingdom

8. MRC Centre for Regenerative Medicine, The University of Edinburgh, Edinburgh, United Kingdom

9. Wolfson Molecular Imaging Centre, University of Manchester, Manchester, United Kingdom

Abstract

Glioblastomas (GBM) are aggressive and therapy-resistant brain tumours, which contain a subpopulation of tumour-propagating glioblastoma stem-like cells (GSC) thought to drive progression and recurrence. Diffuse invasion of the brain parenchyma, including along preexisting blood vessels, is a leading cause of therapeutic resistance, but the mechanisms remain unclear. Here, we show that ephrin-B2 mediates GSC perivascular invasion. Intravital imaging, coupled with mechanistic studies in murine GBM models and patient-derived GSC, revealed that endothelial ephrin-B2 compartmentalises non-tumourigenic cells. In contrast, upregulation of the same ephrin-B2 ligand in GSC enabled perivascular migration through homotypic forward signalling. Surprisingly, ephrin-B2 reverse signalling also promoted tumourigenesis cell-autonomously, by mediating anchorage-independent cytokinesis via RhoA. In human GSC-derived orthotopic xenografts, EFNB2 knock-down blocked tumour initiation and treatment of established tumours with ephrin-B2-blocking antibodies suppressed progression. Thus, our results indicate that targeting ephrin-B2 may be an effective strategy for the simultaneous inhibition of invasion and proliferation in GBM.

Funder

Medical Research Council

Regional Government of Madrid

The Royal Society

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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