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Giant Cell Glioblastoma Is Associated With Altered Aurora B Expression and Concomitant p53 Mutation

Authors :
Masaaki Tatsuka
Matthias Simon
Jörg Felsberg
Michael Weller
Christian Hagel
Manfred Westphal
Achim Temme
Torsten Pietsch
Kathrin Geiger
Guido Reifenberger
Ralf Wiedemuth
Katharina Conseur
Hilmar Berger
Dipl Biol
Gabriele Schackert
Source :
Journal of Neuropathology & Experimental Neurology. 69:632-642
Publication Year :
2010
Publisher :
Oxford University Press (OUP), 2010.

Abstract

Giant cell glioblastoma (gcGB), a subtype of GB, is characterized by the presence of numerous multinucleated giant cells. The prognosis for gcGB is poor, but it may have a better clinical outcome compared with classic GB. The molecular alterations that lead to the multinucleated cell phenotype of gcGB have not been elucidated. Giant cell GB has a higher frequency of the tumor suppressor protein p53 mutations than GB, however, and a role for the mitotic Aurora B kinase has been suggested. We analyzed Aurora B expression in gcGB (n = 28) and GB (n = 54) patient tumor samples by immunohistochemistry; 17 gcGB and 22 GB samples were analyzed at the DNA and mRNA levels. No mutations in the Aurora B gene (AURKB) were found, but its mRNA and protein levels were significantly higher in gcGB than in GB. Fifty-nine percent of gcGB samples but only 18% of the GB samples showed p53 mutations. Ectopic overexpression of Aurora B induced a significant increase inthe proportion of multinucleated cells in p53 mutant U373-MG, but not in p53 wild-type U87-MG, glioma cells. RNAi of p53 in U87-MG cells led to an increase in the fraction of multinucleated cells that was further augmented by ectopic overexpression of Aurora B. These results suggest that loss of p53 function and dysregulated Aurora B protein levels might represent factors that drive the development of multinucleated cells in gcGB.

Details

ISSN :
15546578 and 00223069
Volume :
69
Database :
OpenAIRE
Journal :
Journal of Neuropathology & Experimental Neurology
Accession number :
edsair.doi.dedup.....4693cfde87ac85da1b69628f1c75bca0
Full Text :
https://doi.org/10.1097/nen.0b013e3181e4c06e