Back to Search Start Over

Data from MYC Drives Group 3 Medulloblastoma through Transformation of Sox2+ Astrocyte Progenitor Cells

Authors :
Yanxin Pei
Roger Packer
Brian R. Rood
Charles G. Eberhart
Yang Liu
Pan Zheng
Christopher Lazarski
Samuel Rivero-Hinojosa
Marcel Kool
Konstantin Okonechnikov
Peng Zhang
Zhenhua Xu
Najiba Murad
Ran Tao
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

A subset of group 3 medulloblastoma frequently harbors amplification or overexpression of MYC lacking additional focal aberrations, yet it remains unclear whether MYC overexpression alone can induce tumorigenesis and which cells give rise to these tumors. Here, we showed that astrocyte progenitors in the early postnatal cerebellum were susceptible to transformation by MYC. The resulting tumors specifically resembled human group 3 medulloblastoma based on histology and gene-expression profiling. Gene-expression analysis of MYC-driven medulloblastoma cells revealed altered glucose metabolic pathways with marked overexpression of lactate dehydrogenase A (LDHA). LDHA abundance correlated positively with MYC expression and was associated with poor prognosis in human group 3 medulloblastoma. Inhibition of LDHA significantly reduced growth of both mouse and human MYC-driven tumors but had little effect on normal cerebellar cells or SHH-associated medulloblastoma. By generating a new mouse model, we demonstrated for the first time that astrocyte progenitors can be transformed by MYC and serve as the cells of origin for group 3 medulloblastoma. Moreover, we identified LDHA as a novel, specific therapeutic target for this devastating disease.Significance:Insights from a new model identified LDHA as a novel target for group 3 medulloblastoma, paving the way for the development of effective therapies against this disease.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........53bd0aaa74edde60fc8a6f2f465ab0fc
Full Text :
https://doi.org/10.1158/0008-5472.c.6511457.v1