4.8 Article

Downregulation of PRDX1 by promoter hypermethylation is frequent in 1p/19q-deleted oligodendroglial tumours and increases radio- and chemosensitivity of Hs683 glioma cells in vitro

Journal

ONCOGENE
Volume 31, Issue 29, Pages 3409-3418

Publisher

SPRINGERNATURE
DOI: 10.1038/onc.2011.513

Keywords

chemosensitivity; oligodendroglioma; peroxiredoxin 1; promoter methylation; radiosensitivity; temozolomide

Funding

  1. German Federal Ministry of Education and Research (BMBF) within the National Genome Research Network NGFN2 [01GS0460, 01GS0462]
  2. NGFNplus [01GS0883, 01GS0884, 01GS08186]
  3. Ministry for Innovation, Science, Research and Technology (MIWFT) of Nordrhein Westfalen
  4. Helmholtz international graduate school for cancer research

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Deletions of chromosomal arms 1p and 19q are frequent in oligodendroglial tumours and linked to radio- and chemotherapy response as well as longer survival. The molecular mechanisms underlying this clinically important association are as yet unknown. Here, we studied the peroxiredoxin 1 (PRDX1) gene at 1p34.1 for promoter methylation and expression in primary gliomas and investigated its role in radio- and chemosensitivity of glioma cells in vitro. In total, we screened primary glioma tissues from 93 patients for methylation of the 50-CpG island of PRDX1 by sodium bisulfite sequencing. PRDX1 mRNA and protein expression levels were determined in subsets of the tumours by quantitative PCR and western blot analysis, respectively. PRDX1 hypermethylation and reduced expression were frequently detected in oligodendroglial tumours and secondary glioblastomas, but not in primary glioblastomas. In oligodendroglial tumours, both PRDX1 hypermethylation and reduced mRNA expression were significantly associated with 1p/19q-deletion. Stable knockdown of PRDX1 by lentiviral transduction of short-hairpin (sh) RNA constructs significantly increased apoptosis and reduced cell viability of Hs683 glioma cells exposed to ionizing irradiation or temozolomide in vitro. Taken together, our findings indicate that epigenetic silencing of PRDX1 is frequent in 1p/19q-deleted oligodendroglial tumours and likely contributes to radio- and chemosensitivity of these tumours. Oncogene (2012) 31, 3409-3418; doi:10.1038/onc.2011.513; published online 12 December 2011

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