Increased HOXA5 expression provides a selective advantage for gain of whole chromosome 7 in IDH wild-type glioblastoma Journal Article


Authors: Cimino, P. J.; Kim, Y.; Wu, H. J.; Alexander, J.; Wirsching, H. G.; Szulzewsky, F.; Pitter, K.; Ozawa, T.; Wang, J.; Vazquez, J.; Arora, S.; Rabadan, R.; Levine, R.; Michor, F.; Holland, E. C.
Article Title: Increased HOXA5 expression provides a selective advantage for gain of whole chromosome 7 in IDH wild-type glioblastoma
Abstract: Glioblastoma is the most frequently occurring and invariably fatal primary brain tumor in adults. The vast majority of glioblastomas is characterized by chromosomal copy number alterations, including gain of whole chromosome 7 and loss of whole chromosome 10. Gain of whole chromosome 7 is an early event in gliomagenesis that occurs in proneural-like precursor cells, which give rise to all isocitrate dehydrogenase (IDH) wild-type glioblastoma transcriptional subtypes. Platelet-derived growth factor A (PDGFA) is one gene on chromosome 7 known to drive gliomagenesis, but, given its location near the end of 7p, there are likely several other genes located along chromosome 7 that select for its increased whole-chromosome copy number within glioblastoma cells. To identify other potential genes that could select for gain of whole chromosome 7, we developed an unbiased bioinformatics approach that identified homeobox A5 (HOXA5) as a gene whose expression correlated with gain of chromosome 7 and a more aggressive phenotype of the resulting glioma. High expression of HOXA5 in glioblastoma was associated with a proneural gene expression pattern and decreased overall survival in both human proneural and PDGF-driven mouse glioblastoma. Furthermore, HOXA5 overexpression promoted cellular proliferation and potentiated radioresistance. We also found enrichment of HOXA5 expression in recurrent human and mouse glioblastoma at first recurrence after radiotherapy. Overall, this study implicates HOXA5 as a chromosome 7-associated gene-level locus that promotes selection for gain of whole chromosome 7 and an aggressive phenotype in glioblastoma. © 2018 Cimino et al.
Keywords: glioblastoma; homeobox; rcas; chromosome 7 gain; hoxa
Journal Title: Genes and Development
Volume: 32
Issue: 7-8
ISSN: 0890-9369
Publisher: Cold Spring Harbor Laboratory Press  
Date Published: 2018-04-01
Start Page: 512
End Page: 523
Language: English
DOI: 10.1101/gad.312157.118
PROVIDER: scopus
PMCID: PMC5959235
PUBMED: 29632085
DOI/URL:
Notes: Article -- Export Date: 1 June 2018 -- Source: Scopus
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  1. Ross Levine
    778 Levine
  2. Ken L Pitter
    53 Pitter