Emerging data strongly suggests that the infidelity of DNA cytosine methyltransferase may result in the perturbation of cytosine methylation patterns and contribute to the development of cancer in man. Altered cytosine methytransferase activity may result in activation of oncogenes, silencing of tumor suppressor genes, or mutation through induced cytosine deamination. Several methods have been developed which allow determination of the methylation status of specific cytosine residues in DNA derived from cell lines and tumor specimens. Substantially less attention, however, has been focused on the mechanisms by which methylation patterns may become altered or perturbed. We have developed a novel in vitro assay, which allows us to determine quantitatively the DNA substrate preferences for DNA cytosine methyltransferases. This method, which we call mass tagging, is based upon labelling target cytosine residues in synthetic oligonucleotides with stable isotopes. Methylase-mediated base modification is examined by gas chromatography/mass spectrometry (UC/MS). With this method, we can examine the effects of DNA structural perturbations, such as mispairs and damaged bases, on methylase rate and base selectivity. We can also examine the effects of oligonucleotides bearing mechanism-based inhibitors such as 5-fluorocytosine and 5-azacytosine, and the tendency of the maintenance methylase to methylate unmethylated sites adjacent to hemimethylated sites. We propose to study purified mammalian maintenance methylases, a newly identified class of """"""""de novo"""""""" methylases, as well as extracts from cells with demonstrated perturbations in methylation patterns. Completion of the proposed studies will substantially increase our understanding of the mechanisms by which the fidelity of cytosine methylation may be reduced and provide tools for testing agents which may increase the fidelity of methylation in vivo or act as selective methylase inhibitors.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
1R01CA084487-01
Application #
6042146
Study Section
Special Emphasis Panel (ZRG1-SSS-N (01))
Program Officer
Okano, Paul
Project Start
2000-05-01
Project End
2001-04-30
Budget Start
2000-05-01
Budget End
2001-04-30
Support Year
1
Fiscal Year
2000
Total Cost
$297,307
Indirect Cost
Name
City of Hope/Beckman Research Institute
Department
Type
DUNS #
City
Duarte
State
CA
Country
United States
Zip Code
91010
Hsu, Chia Wei; Sowers, Mark L; Hsu, Willie et al. (2017) How does inflammation drive mutagenesis in colorectal cancer? Trends Cancer Res 12:111-132
Carter, Megan; Voth, Andrea Regier; Scholfield, Matthew R et al. (2013) Enthalpy-entropy compensation in biomolecular halogen bonds measured in DNA junctions. Biochemistry 52:4891-903
Theruvathu, Jacob A; Yin, Y Whitney; Pettitt, B Montgomery et al. (2013) Comparison of the structural and dynamic effects of 5-methylcytosine and 5-chlorocytosine in a CpG dinucleotide sequence. Biochemistry 52:8590-8
Seiberling, Kristin A; Church, Christopher A; Herring, Jason L et al. (2012) Epigenetics of chronic rhinosinusitis and the role of the eosinophil. Int Forum Allergy Rhinol 2:80-4
Xiong, Lei; Darwanto, Agus; Sharma, Seema et al. (2011) Mass spectrometric studies on epigenetic interaction networks in cell differentiation. J Biol Chem 286:13657-68
Ito, Shinsuke; D'Alessio, Ana C; Taranova, Olena V et al. (2010) Role of Tet proteins in 5mC to 5hmC conversion, ES-cell self-renewal and inner cell mass specification. Nature 466:1129-33
Lao, Victoria Valinluck; Darwanto, Agus; Sowers, Lawrence C (2010) Impact of base analogues within a CpG dinucleotide on the binding of DNA by the methyl-binding domain of MeCP2 and methylation by DNMT1. Biochemistry 49:10228-36
Kim, Cherine H; Darwanto, Agus; Theruvathu, Jacob A et al. (2010) Polymerase incorporation and miscoding properties of 5-chlorouracil. Chem Res Toxicol 23:740-8
Theruvathu, Jacob A; Kim, Cherine H; Rogstad, Daniel K et al. (2009) Base pairing configuration and stability of an oligonucleotide duplex containing a 5-chlorouracil-adenine base pair. Biochemistry 48:7539-46
Herring, Jason L; Rogstad, Daniel K; Sowers, Lawrence C (2009) Enzymatic methylation of DNA in cultured human cells studied by stable isotope incorporation and mass spectrometry. Chem Res Toxicol 22:1060-8

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