Literature DB >> 19127118

Epigenetic downregulation of the DNA repair gene MED1/MBD4 in colorectal and ovarian cancer.

J Harrison Howard1, Andrey Frolov, Ching-Wei D Tzeng, Ashley Stewart, Andrew Midzak, Amar Majmundar, Andrew Godwin, Martin Heslin, Alfonso Bellacosa, J Pablo Arnoletti.   

Abstract

MED1 is a base excision repair enzyme that interacts with the mismatch repair protein MLH1 and maintains genomic integrity by binding methylated DNA and repairing spontaneous deamination events. MED1 mutations have been associated with microsatellite instability and accelerated colorectal cancer (CRC) tumorigenesis. We propose that promoter methylation may serve as an alternative epigenetic mechanism for MED1 gene suppression during sporadic CRC tumorigenesis. Methylation status of the MED1 promoter was investigated in a panel of ovarian and colorectal cancer cell lines. The MED1 promoter region was sequenced following bisulfite treatment and sequence analysis identified a CpG island within the MED1 promoter which is frequently and preferentially methylated (> or =50%) in ovarian and colorectal cancer cell lines with low/reduced MED1 expression. In vitro reversal of methylation restored MED1 expression. In colorectal cancer patients, when MED1 methylation was present, both tumor and matched mucosa were affected equally (mean frequency of methylation 24%) and there was no correlation between methylation and tumor stage. Patients without history of CRC showed significantly lower frequency of methylation (mean 14%, p < 0.05). Decreased MED1 transcript levels were observed in matched normal mucosa when compared to controls (median fold difference 8.0). Additional decreased expression was seen between mucosa and matched tumor (median fold decrease 4.4). Thus, MED1 promoter methylation and gene silencing occur in sporadic CRC patients and represent an early event in CRC tumorigenesis. Detection of MED1 methylation and gene suppression in normal colon mucosa may contribute to identifying patients at higher risk of developing CRC during screening procedures.

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Year:  2009        PMID: 19127118      PMCID: PMC2683899          DOI: 10.4161/cbt.8.1.7469

Source DB:  PubMed          Journal:  Cancer Biol Ther        ISSN: 1538-4047            Impact factor:   4.742


  38 in total

1.  The DNA repair gene MBD4 (MED1) is mutated in human carcinomas with microsatellite instability.

Authors:  A Riccio; L A Aaltonen; A K Godwin; A Loukola; A Percesepe; R Salovaara; V Masciullo; M Genuardi; M Paravatou-Petsotas; D E Bassi; B A Ruggeri; A J Klein-Szanto; J R Testa; G Neri; A Bellacosa
Journal:  Nat Genet       Date:  1999-11       Impact factor: 38.330

2.  Distinct genetic profiles in colorectal tumors with or without the CpG island methylator phenotype.

Authors:  M Toyota; M Ohe-Toyota; N Ahuja; J P Issa
Journal:  Proc Natl Acad Sci U S A       Date:  2000-01-18       Impact factor: 11.205

Review 3.  DNA methylation and human disease.

Authors:  Keith D Robertson
Journal:  Nat Rev Genet       Date:  2005-08       Impact factor: 53.242

Review 4.  Epigenetics and human disease: translating basic biology into clinical applications.

Authors:  David Rodenhiser; Mellissa Mann
Journal:  CMAJ       Date:  2006-01-31       Impact factor: 8.262

5.  CpG island methylation as an early event during adenoma progression in carcinogenesis of sporadic colorectal cancer.

Authors:  Hee Cheol Kim; Sun Ae Roh; In Hwa Ga; Jung-Sun Kim; Chang Sik Yu; Jin Cheon Kim
Journal:  J Gastroenterol Hepatol       Date:  2005-12       Impact factor: 4.029

6.  BRCA1 and BRCA2 mutations account for a large proportion of ovarian carcinoma cases.

Authors:  Tuya Pal; Jenny Permuth-Wey; Judith A Betts; Jeffrey P Krischer; James Fiorica; Hector Arango; James LaPolla; Mitchell Hoffman; Martin A Martino; Katie Wakeley; George Wilbanks; Santo Nicosia; Alan Cantor; Rebecca Sutphen
Journal:  Cancer       Date:  2005-12-15       Impact factor: 6.860

7.  The thymine DNA glycosylase MBD4 represses transcription and is associated with methylated p16(INK4a) and hMLH1 genes.

Authors:  Emiko Kondo; Zhaodi Gu; Akira Horii; Shinichi Fukushige
Journal:  Mol Cell Biol       Date:  2005-06       Impact factor: 4.272

8.  Promoter hypermethylation profile of ovarian epithelial neoplasms.

Authors:  Prakash B Makarla; M Hossein Saboorian; Raheela Ashfaq; Kiyomi O Toyooka; Shinichi Toyooka; John D Minna; Adi F Gazdar; John O Schorge
Journal:  Clin Cancer Res       Date:  2005-08-01       Impact factor: 12.531

9.  Hypermethylation of the MLH1 promoter with concomitant absence of transcript and protein occurs in small patches of crypt cells in unaffected mucosa from sporadic colorectal carcinoma.

Authors:  Gerard J Nuovo; Hidewaki Nakagawa; Kaisa Sotamaa; Albert de la Chapelle
Journal:  Diagn Mol Pathol       Date:  2006-03

10.  DNA hypermethylation in the normal colonic mucosa of patients with colorectal cancer.

Authors:  K Kawakami; A Ruszkiewicz; G Bennett; J Moore; F Grieu; G Watanabe; B Iacopetta
Journal:  Br J Cancer       Date:  2006-02-27       Impact factor: 7.640

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  23 in total

Review 1.  Epigenetic changes of DNA repair genes in cancer.

Authors:  Christoph Lahtz; Gerd P Pfeifer
Journal:  J Mol Cell Biol       Date:  2011-02       Impact factor: 6.216

2.  Thymine DNA glycosylase is essential for active DNA demethylation by linked deamination-base excision repair.

Authors:  Salvatore Cortellino; Jinfei Xu; Mara Sannai; Robert Moore; Elena Caretti; Antonio Cigliano; Madeleine Le Coz; Karthik Devarajan; Andy Wessels; Dianne Soprano; Lara K Abramowitz; Marisa S Bartolomei; Florian Rambow; Maria Rosaria Bassi; Tiziana Bruno; Maurizio Fanciulli; Catherine Renner; Andres J Klein-Szanto; Yoshihiro Matsumoto; Dominique Kobi; Irwin Davidson; Christophe Alberti; Lionel Larue; Alfonso Bellacosa
Journal:  Cell       Date:  2011-06-30       Impact factor: 41.582

3.  The Roles of the Methyl-CpG Binding Proteins in Cancer.

Authors:  Lee Parry; Alan R Clarke
Journal:  Genes Cancer       Date:  2011-06

Review 4.  Epigenetic regulation of DNA repair machinery in Helicobacter pylori-induced gastric carcinogenesis.

Authors:  Juliana Carvalho Santos; Marcelo Lima Ribeiro
Journal:  World J Gastroenterol       Date:  2015-08-14       Impact factor: 5.742

5.  Modification of the base excision repair enzyme MBD4 by the small ubiquitin-like molecule SUMO1.

Authors:  Mara Sannai; Valentina Doneddu; Veda Giri; Steven Seeholzer; Emmanuelle Nicolas; Shu-Chin Yip; Maria Rosaria Bassi; Pietro Mancuso; Salvatore Cortellino; Antonio Cigliano; Rebecca Lurie; Hua Ding; Jonathan Chernoff; Robert W Sobol; Timothy J Yen; Luigi Bagella; Alfonso Bellacosa
Journal:  DNA Repair (Amst)       Date:  2019-08-08

Review 6.  Chemically induced carcinogenesis in rodent models of aging: assessing organismal resilience to genotoxic stressors in geroscience research.

Authors:  Anna Csiszar; Priya Balasubramanian; Stefano Tarantini; Andriy Yabluchanskiy; Xin A Zhang; Zsolt Springo; Doris Benbrook; William E Sonntag; Zoltan Ungvari
Journal:  Geroscience       Date:  2019-04-29       Impact factor: 7.713

7.  Epigenetic reduction of DNA repair in progression to gastrointestinal cancer.

Authors:  Carol Bernstein; Harris Bernstein
Journal:  World J Gastrointest Oncol       Date:  2015-05-15

8.  Small molecule inhibition of cytoskeletal dynamics in melanoma tumors results in altered transcriptional expression patterns of key genes involved in tumor initiation and progression.

Authors:  Carrie Spencer; John Montalvo; Sarah R McLaughlin; Brad A Bryan
Journal:  Cancer Genomics Proteomics       Date:  2011 Mar-Apr       Impact factor: 4.069

9.  Effect of UVB irradiation on microRNA expression in mouse epidermis.

Authors:  Bing-Rong Zhou; Yang Xu; Dan Luo
Journal:  Oncol Lett       Date:  2012-01-03       Impact factor: 2.967

Review 10.  DNA methyltransferases, DNA damage repair, and cancer.

Authors:  Bilian Jin; Keith D Robertson
Journal:  Adv Exp Med Biol       Date:  2013       Impact factor: 2.622

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