| Literature DB >> 29490009 |
Veronica Ferrucci1,2,3, Pasqualino de Antonellis1,2,4, Francesco Paolo Pennino1,2, Fatemeh Asadzadeh2, Antonella Virgilio5, Donatella Montanaro2, Aldo Galeone5, Iolanda Boffa2, Ida Pisano2, Iolanda Scognamiglio2, Luigi Navas6, Donatella Diana7, Emilia Pedone7, Sara Gargiulo7, Matteo Gramanzini7, Arturo Brunetti2,8, Laura Danielson9, Marianeve Carotenuto1,2, Lucia Liguori2, Antonio Verrico10, Lucia Quaglietta10, Maria Elena Errico11, Valentina Del Monaco2, Valeria D'Argenio1,2, Felice Tirone12, Angela Mastronuzzi13, Vittoria Donofrio11, Felice Giangaspero14,15, Daniel Picard16, Marc Remke16, Livia Garzia4,17, Craig Daniels4, Olivier Delattre18, Fredrik J Swartling19, William A Weiss20, Francesco Salvatore1,2, Roberto Fattorusso21, Louis Chesler9, Michael D Taylor4,17, Giuseppe Cinalli10, Massimo Zollo1,2,3,22.
Abstract
Genetic modifications during development of paediatric groups 3 and 4 medulloblastoma are responsible for their highly metastatic properties and poor patient survival rates. PRUNE1 is highly expressed in metastatic medulloblastoma group 3, which is characterized by TGF-β signalling activation, c-MYC amplification, and OTX2 expression. We describe the process of activation of the PRUNE1 signalling pathway that includes its binding to NME1, TGF-β activation, OTX2 upregulation, SNAIL (SNAI1) upregulation, and PTEN inhibition. The newly identified small molecule pyrimido-pyrimidine derivative AA7.1 enhances PRUNE1 degradation, inhibits this activation network, and augments PTEN expression. Both AA7.1 and a competitive permeable peptide that impairs PRUNE1/NME1 complex formation, impair tumour growth and metastatic dissemination in orthotopic xenograft models with a metastatic medulloblastoma group 3 cell line (D425-Med cells). Using whole exome sequencing technology in metastatic medulloblastoma primary tumour cells, we also define 23 common 'non-synonymous homozygous' deleterious gene variants as part of the protein molecular network of relevance for metastatic processes. This PRUNE1/TGF-β/OTX2/PTEN axis, together with the medulloblastoma-driver mutations, is of relevance for future rational and targeted therapies for metastatic medulloblastoma group 3.10.1093/brain/awy039_video1awy039media15742053534001.Entities:
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Year: 2018 PMID: 29490009 DOI: 10.1093/brain/awy039
Source DB: PubMed Journal: Brain ISSN: 0006-8950 Impact factor: 13.501