Truncated BRPF1 Cooperates with Smoothened to Promote Adult Shh Medulloblastoma

Summary: The transition of neural progenitors to differentiated postmitotic neurons is mainly considered irreversible in physiological conditions. In the present work, we show that Shh pathway activation through SmoM2 expression promotes postmitotic neurons dedifferentiation, re-entering in the cell...

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Main Authors: Giuseppe Aiello, Claudio Ballabio, Riccardo Ruggeri, Luca Fagnocchi, Marica Anderle, Ilaria Morassut, Davide Caron, Francesca Garilli, Francesca Gianno, Felice Giangaspero, Silvano Piazza, Alessandro Romanel, Alessio Zippo, Luca Tiberi
Format: Article
Language:English
Published: Elsevier 2019-12-01
Series:Cell Reports
Online Access:http://www.sciencedirect.com/science/article/pii/S2211124719315281
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Summary:Summary: The transition of neural progenitors to differentiated postmitotic neurons is mainly considered irreversible in physiological conditions. In the present work, we show that Shh pathway activation through SmoM2 expression promotes postmitotic neurons dedifferentiation, re-entering in the cell cycle and originating medulloblastoma in vivo. Notably, human adult patients present inactivating mutations of the chromatin reader BRPF1 that are associated with SMO mutations and absent in pediatric and adolescent patients. Here, we found that truncated BRPF1 protein, as found in human adult patients, is able to induce medulloblastoma in adult mice upon SmoM2 activation. Indeed, postmitotic neurons re-entered the cell cycle and proliferated as a result of chromatin remodeling of neurons by BRPF1. Our model of brain cancer explains the onset of a subset of human medulloblastoma in adult individuals where granule neuron progenitors are no longer present. : Medulloblastoma is a brain tumor affecting the cerebellum of infants and adults. Aiello et al. establish a mouse model for adult onset, which allows investigation of the pathogenesis of the disease and identifies neurons as putative cells of origin. Keywords: medulloblastoma, dedifferentiation, cell-of-origin, BRPF1, super-enhancers, SHH, adult
ISSN:2211-1247