Identification of vrk1 as a new neuroblastoma tumor progression marker regulating cell proliferation

Neuroblastoma (NB) is one of the most common pediatric cancers and presents a poor survival rate in affected children. Current pretreatment risk assessment relies on a few known molecular parameters, like the amplification of the oncogene MYCN. However, a better molecular knowledge about the aggress...

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Detalles Bibliográficos
Autores: Colmenero Repiso, Ana, Gómez Muñoz, María A., Rodríguez Prieto, Ismael, Amador Álvarez, Aida, Henrich, Kai Oliver, Pascual Vaca, Diego, Okonechnikov, Konstantin, Rivas, Eloy, Westermann, Frank, Pardal Redondo, Ricardo, Vega Moreno, Francisco Manuel
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2020
País:España
Institución:Universidad de Sevilla (US)
Repositorio:idUS. Depósito de Investigación de la Universidad de Sevilla
OAI Identifier:oai:idus.us.es:11441/126685
Acceso en línea:https://hdl.handle.net/11441/126685
https://doi.org/10.3390/cancers12113465
Access Level:acceso abierto
Palabra clave:High-risk
MYCN
Neuroblastoma
Proliferation
Tumorigenesis
VRK1
Descripción
Sumario:Neuroblastoma (NB) is one of the most common pediatric cancers and presents a poor survival rate in affected children. Current pretreatment risk assessment relies on a few known molecular parameters, like the amplification of the oncogene MYCN. However, a better molecular knowledge about the aggressive progression of the disease is needed to provide new therapeutical targets and prognostic markers and to improve patients’ outcomes. The human protein kinase VRK1 phosphorylates various signaling molecules and transcription factors to regulate cell cycle progression and other processes in physiological and pathological situations. Using neuroblastoma tumor expression data, tissue microarrays from fresh human samples and patient-derived xenografts (PDXs), we have determined that VRK1 kinase expression stratifies patients according to tumor aggressiveness and survival, allowing the identification of patients with worse outcome among intermediate risk. VRK1 associates with cell cycle signaling pathways in NB and its downregulation abrogates cell proliferation in vitro and in vivo. Through the analysis of ChIP-seq and methylation data from NB tumors, we show that VRK1 is a MYCN gene target, however VRK1 correlates with NB aggressiveness independently of MYCN gene amplification, synergizing with the oncogene to drive NB progression. Our study also suggests that VRK1 inhibition may constitute a novel cell-cycle-targeted strategy for anticancer therapy in neuroblastoma.