Literature DB >> 16234003

Pancreaticobiliary cancers with deficient methylenetetrahydrofolate reductase genotypes.

Hiroyuki Matsubayashi1, Halcyon G Skinner, Christine Iacobuzio-Donahue, Tadayoshi Abe, Norihiro Sato, Taylor Sohn Riall, Charles J Yeo, Scott E Kern, Michael Goggins.   

Abstract

BACKGROUND & AIMS: Methyl group deficiency might promote carcinogenesis by inducing DNA breaks and DNA hypomethylation. We hypothesized that deficient methylenetetrahydrofolate reductase (MTHFR) genotypes could promote pancreatic cancer development.
METHODS: First, we performed a case-control study of germline MTHFR polymorphisms (C677T, A1298C) in 303 patients with pancreatic cancer and 305 matched control subjects. Pancreatic neoplasms frequently lose an MTHFR allele during tumorigenesis; we hypothesized that such loss could promote carcinogenesis. We therefore evaluated the cancer MTHFR genotypes of 82 patients with pancreaticobiliary cancers and correlated them to genome-wide measures of chromosomal deletion by using 386 microsatellite markers. Finally, MTHFR genotypes were correlated with global DNA methylation in 68 cancer cell lines.
RESULTS: Germline MTHFR polymorphisms were not associated with an increased likelihood of having pancreatic cancer. Fractional allelic loss (a measure of chromosomal loss) trended higher in cancers with 677T genotypes than in cancers with other genotypes (P = .055). Among cancers with loss of an MTHFR allele, cancers with 677T MTHFR alleles had more deletions at folate-sensitive fragile sites (36.9%) and at tumor suppressor gene loci (68.5%) than 677C cancers (28.7% and 47.8%, P = .079 and .014, respectively). LINE1 methylation was lower in cancers with less functional 677T/TT genotypes (24.4%) than in those with 677CT (26.0%) and CC/C genotypes (32.5%) (P = .014).
CONCLUSION: Cancers with defective MTHFR genotypes have more DNA hypomethylation and more chromosomal losses. Deficient MTHFR function due to loss of an MTHFR allele by an evolving neoplasm might, by promoting chromosomal losses, accelerate cancer development.

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Year:  2005        PMID: 16234003     DOI: 10.1016/s1542-3565(05)00359-9

Source DB:  PubMed          Journal:  Clin Gastroenterol Hepatol        ISSN: 1542-3565            Impact factor:   11.382


  12 in total

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2.  Pancreatic cancer DNMT1 expression and sensitivity to DNMT1 inhibitors.

Authors:  Ang Li; Noriyuki Omura; Seung-Mo Hong; Michael Goggins
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3.  Association of MTHFR gene polymorphisms with pancreatic cancer: meta-analysis of 17 case-control studies.

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Journal:  Int J Clin Oncol       Date:  2019-11-07       Impact factor: 3.402

4.  Genome-wide profiling of methylated promoters in pancreatic adenocarcinoma.

Authors:  Noriyuki Omura; Chung-Pin Li; Ang Li; Seung-Mo Hong; Kimberly Walter; Antonio Jimeno; Manuel Hidalgo; Michael Goggins
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5.  Epigenetics and epigenetic alterations in pancreatic cancer.

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6.  Long interspersed nuclear element-1 hypomethylation in cancer: biology and clinical applications.

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7.  The MTHFR C677T polymorphism and global DNA methylation in oral epithelial cells.

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Journal:  Genet Mol Biol       Date:  2013-09-03       Impact factor: 1.771

Review 8.  An overview of genetic polymorphisms and pancreatic cancer risk in molecular epidemiologic studies.

Authors:  Yingsong Lin; Kiyoko Yagyu; Naoto Egawa; Makoto Ueno; Mitsuru Mori; Haruhisa Nakao; Hiroshi Ishii; Kozue Nakamura; Kenji Wakai; Satoyo Hosono; Akiko Tamakoshi; Shogo Kikuchi
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9.  Associations between polymorphisms in folate-metabolizing genes and pancreatic cancer risk in Japanese subjects.

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Journal:  BMC Gastroenterol       Date:  2016-07-29       Impact factor: 3.067

10.  The role of the folate pathway in pancreatic cancer risk.

Authors:  Shirisha Chittiboyina; Zhongxue Chen; E Gabriela Chiorean; Lisa M Kamendulis; Barbara A Hocevar
Journal:  PLoS One       Date:  2018-02-23       Impact factor: 3.240

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