Abstract
<jats:title>Abstract</jats:title> <jats:p> Cancer stem-like cells (CSCs) not only initiate tumors but also orchestrate angiogenesis through multiple mechanisms, thereby sustaining vascularization and promoting tumor growth. In glioblastoma (GBM; WHO grade IV glioma), the most aggressive adult brain tumor, glioma stem-like cells (GSCs; glioma CSCs) are the main drivers of tumor progression, drug resistance, and recurrence. An interrogated multi-omic secretome analysis identified Wnt-β-catenin signaling-regulated, membrane-localized Seizure Related 6 Homolog (SEZ6) as a patient-derived GSC-specific proangiogenic molecule. Silencing of SEZ6 inhibited the ability of the GSC secretome to induce angiogenic network formation by brain- and lung-derived endothelial cells, but not GSC growth as neurospheres <jats:italic>in vitro</jats:italic> . SEZ6 silencing also suppressed patient-derived GSC-initiated glioma tumors, resulting in reduced tumor vasculature in an orthotopic mouse model. We also found that SEZ6 induces TGFβ-dependent IL-8 expression in endothelial cells to promote angiogenesis. Coimmunoprecipitation and molecular dynamics simulation experiments determined that the Sushi 3 domain of SEZ6 mediates the interaction with TGFβ RII to activate the TGFβ pathway. Pharmacological inhibition of BACE1 with an in-house–developed small molecule, or blockade of the SEZ6–TGFβ RII interaction using a rationally designed peptide, markedly attenuated SEZ6-driven TGFβ signaling, and suppressed angiogenesis. Thus, our findings identify SEZ6 as a novel CSC-specific therapeutic target for GBM. </jats:p>