Clinical implications of promoter hypermethylation in RASSF1A and MGMT in retinoblastoma Journal Article


Authors: Choy, K. W.; Lee, T. C.; Cheung, K. F.; Fan, D. S. P.; Lo, K. W.; Beaverson, K. L.; Abramson, D. H.; Lam, D. S. C.; Yu, C. B. O.; Pang, C. P.
Article Title: Clinical implications of promoter hypermethylation in RASSF1A and MGMT in retinoblastoma
Abstract: We investigated the epigenetic silencing and genetic changes of the RAS-associated domain family 1A (RASSF1A) gene and the O 6- methylguanine-DNA methyltransferase (MGMT) gene in retinoblastoma. We extracted DNA from microdissected tumor and normal retina tissues of the same patient in 68 retinoblastoma cases. Promoter methylation in RASSF1A and MGMT was analyzed by methylation-specific PCR, RASSF1A sequence alterations in all coding exons by direct DNA sequencing, and RASSF1A expression by RT-PCR. Cell cycle staging was analyzed by flow cytometry. We detected RASSF1A promoter hypermethylation in 82% of retinoblastoma, in tumor tissues only but not in adjacent normal retinal tissue cells. There was no expression of RASSF1A transcripts in all hypermethylated samples, but RASSF1A transcripts were restored after 5-aza-2′-deoxycytidine treatment with no changes in cell cycle or apoptosis. No mutation in the RASSF1A sequence was found. MGMT hypermethylation was present in 15% of theretinoblastoma samples, and the absence of MGMT hypermethylation was associated (P = .002) with retinoblastoma at advanced Reese-Ellsworth tumor stage. Our results revealed a high RASSF1A hypermethylation frequency in retinoblastoma. The correlation of MGMT inactivation by promoter hypermethylation with lower-stage diseases indicated that MGMT hypermethylation provides useful prognostic information. Epigenetic mechanism plays an important role in the progression of retinoblastoma. Copyright © 2005 Neoplasia Press, Inc. All rights reserved.
Keywords: human cell; methylation; promoter region; mutation; exons; cancer staging; flow cytometry; cell proliferation; gene; cell cycle; dna repair; apoptosis; retinoblastoma; cell line, tumor; dna methylation; tumor suppressor gene; dna; reverse transcriptase polymerase chain reaction; cpg islands; disease progression; lasers; tumor suppressor proteins; retina; dna sequence; gene inactivation; methylated dna protein cysteine methyltransferase; dna mutational analysis; mgmt gene; sequence analysis, dna; rb; ras association domain family protein 1a; mgmt; o(6)-methylguanine-dna methyltransferase; promoter regions (genetics); rassf1a; chromosome microdissection; rassf1a gene
Journal Title: NeoPlasia
Volume: 7
Issue: 3
ISSN: 1522-8002
Publisher: Elsevier Science Inc.  
Date Published: 2005-03-01
Start Page: 200
End Page: 206
Language: English
DOI: 10.1593/neo.04565
PUBMED: 15799820
PROVIDER: scopus
PMCID: PMC1501141
DOI/URL:
Notes: --- - "Cited By (since 1996): 15" - "Export Date: 24 October 2012" - "CODEN: NEOPF" - "Source: Scopus"
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  1. David H Abramson
    394 Abramson