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Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA

Mutation in p53 tumor suppressor gene is a hallmark of human cancers. Six major mutational hotspots in p53 contain methylated CpG (mCpG) sites, and C →T transition is the most common mutation at these sites. It was hypothesized that the formation of 5-methylcytosine glycol induced by reactive oxygen...

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Autores principales: Cao, Huachuan, Jiang, Yong, Wang, Yinsheng
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2770644/
https://www.ncbi.nlm.nih.gov/pubmed/19706732
http://dx.doi.org/10.1093/nar/gkp615
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author Cao, Huachuan
Jiang, Yong
Wang, Yinsheng
author_facet Cao, Huachuan
Jiang, Yong
Wang, Yinsheng
author_sort Cao, Huachuan
collection PubMed
description Mutation in p53 tumor suppressor gene is a hallmark of human cancers. Six major mutational hotspots in p53 contain methylated CpG (mCpG) sites, and C →T transition is the most common mutation at these sites. It was hypothesized that the formation of 5-methylcytosine glycol induced by reactive oxygen species, its spontaneous deamination to thymine glycol and the miscoding property of the latter may account, in part, for the ubiquitous C →T mutation at CpG site. Here, we assessed the kinetics of deamination for two diastereomers of 5-methylcytosine glycol in duplex DNA. Our results revealed that the half-lives for the deamination of the (5S,6S) and (5R,6R) diastereomers of 5-methylcytosine glycol in duplex DNA at 37°C were 37.4 ± 1.6 and 27.4 ± 1.0 h, respectively. The deamination rates were only slightly lower than those for the two diastereomers in mononucleosides. Next, we assessed the formation of 5-methyl-2′-deoxycytidine glycol in the form of its deaminated product, namely, thymidine glycol (Tg), in methyl-CpG-bearing duplex DNA treated with Cu(II)/H(2)O(2)/ascorbate. LC-MS/MS quantification results showed that the yield of Tg is similar as that of 5-(hydroxymethyl)-2′-deoxycytidine. Together, our data support that the formation and deamination of 5-methylcytosine glycol may contribute significantly to the C →T transition mutation at mCpG dinucleotide site.
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spelling pubmed-27706442009-10-30 Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA Cao, Huachuan Jiang, Yong Wang, Yinsheng Nucleic Acids Res Synthetic Biology and Chemistry Mutation in p53 tumor suppressor gene is a hallmark of human cancers. Six major mutational hotspots in p53 contain methylated CpG (mCpG) sites, and C →T transition is the most common mutation at these sites. It was hypothesized that the formation of 5-methylcytosine glycol induced by reactive oxygen species, its spontaneous deamination to thymine glycol and the miscoding property of the latter may account, in part, for the ubiquitous C →T mutation at CpG site. Here, we assessed the kinetics of deamination for two diastereomers of 5-methylcytosine glycol in duplex DNA. Our results revealed that the half-lives for the deamination of the (5S,6S) and (5R,6R) diastereomers of 5-methylcytosine glycol in duplex DNA at 37°C were 37.4 ± 1.6 and 27.4 ± 1.0 h, respectively. The deamination rates were only slightly lower than those for the two diastereomers in mononucleosides. Next, we assessed the formation of 5-methyl-2′-deoxycytidine glycol in the form of its deaminated product, namely, thymidine glycol (Tg), in methyl-CpG-bearing duplex DNA treated with Cu(II)/H(2)O(2)/ascorbate. LC-MS/MS quantification results showed that the yield of Tg is similar as that of 5-(hydroxymethyl)-2′-deoxycytidine. Together, our data support that the formation and deamination of 5-methylcytosine glycol may contribute significantly to the C →T transition mutation at mCpG dinucleotide site. Oxford University Press 2009-10 2009-08-25 /pmc/articles/PMC2770644/ /pubmed/19706732 http://dx.doi.org/10.1093/nar/gkp615 Text en © The Author 2009. Published by Oxford University Press. http://creativecommons.org/licenses?by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses?by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Synthetic Biology and Chemistry
Cao, Huachuan
Jiang, Yong
Wang, Yinsheng
Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA
title Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA
title_full Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA
title_fullStr Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA
title_full_unstemmed Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA
title_short Kinetics of deamination and Cu(II)/H(2)O(2)/Ascorbate-induced formation of 5-methylcytosine glycol at CpG sites in duplex DNA
title_sort kinetics of deamination and cu(ii)/h(2)o(2)/ascorbate-induced formation of 5-methylcytosine glycol at cpg sites in duplex dna
topic Synthetic Biology and Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2770644/
https://www.ncbi.nlm.nih.gov/pubmed/19706732
http://dx.doi.org/10.1093/nar/gkp615
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