Literature DB >> 2519782

Identification of 3,N4-propanodeoxycytidine 5'-monophosphate formed by the reaction of acrolein with deoxycytidine 5'-monophosphate.

R A Smith1, D S Williamson, S M Cohen.   

Abstract

Acrolein reacts with deoxycytidine 5'-monophosphate at physiological pH to form one major adduct. A second minor adduct can be detected when a 3-fold excess of acrolein is present in the reaction mixture. The products were separated by ion-pair HPLC on two reverse-phase columns connected in series using triethylammonium formate as ion-pair reagent. The major adduct was characterized as 3-(5'-monophospho-2'-deoxyribosyl)-7,8, 9-trihydro-7-hydroxy-pyrimido [3,4-c]pyrimidin-2-one (3,N4-propanodeoxcytidine 5'-monophosphate). This mixture of diastereomers was formed by addition of C1 of acrolein to the exocyclic amino group at the 4-position of cytidine, followed by ring closure between C3 of acrolein and N3 of the heterocyclic ring. In order to address the utility of 32P postlabeling for the detection of this exocyclic adduct in acrolein-modified nucleic acids, an acrolein-deoxycytidine 3'-monophosphate reaction mixture was subjected to 32P postlabeling. 3-Dephosphorylation with nuclease P1 and the 3'-phosphatase activity of T4 polynucleotide kinase yields a nucleotide 5'-[32P] monophosphate which cochromatographs with 3,N4-propanodeoxycytidine 5'-monophosphate. These data indicate that 32P postlabeling and 3'-dephosphorylation can be used in conjunction with ion-pair HPLC for the detection and quantitation of acrolein-modified nucleotides.

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Year:  1989        PMID: 2519782     DOI: 10.1021/tx00010a009

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  6 in total

1.  AlkB dioxygenase preferentially repairs protonated substrates: specificity against exocyclic adducts and molecular mechanism of action.

Authors:  Agnieszka M Maciejewska; Jaroslaw Poznanski; Zuzanna Kaczmarska; Beata Krowisz; Jadwiga Nieminuszczy; Agnieszka Polkowska-Nowakowska; Elzbieta Grzesiuk; Jaroslaw T Kusmierek
Journal:  J Biol Chem       Date:  2012-11-12       Impact factor: 5.157

Review 2.  Origin and Fate of Acrolein in Foods.

Authors:  Kaiyu Jiang; Caihuan Huang; Fu Liu; Jie Zheng; Juanying Ou; Danyue Zhao; Shiyi Ou
Journal:  Foods       Date:  2022-07-03

3.  Development of a cancer DNA phenotype prior to tumor formation.

Authors:  Donald C Malins; Katie M Anderson; Naomi K Gilman; Virginia M Green; Edward A Barker; Karl Erik Hellström
Journal:  Proc Natl Acad Sci U S A       Date:  2004-07-12       Impact factor: 11.205

4.  Serum amine oxidase activity contributes to crisis in mouse embryo cell lines.

Authors:  R E Parchment; A Lewellyn; D Swartzendruber; G B Pierce
Journal:  Proc Natl Acad Sci U S A       Date:  1990-06       Impact factor: 11.205

5.  Replication bypass of the acrolein-mediated deoxyguanine DNA-peptide cross-links by DNA polymerases of the DinB family.

Authors:  Irina G Minko; Kinrin Yamanaka; Ivan D Kozekov; Albena Kozekova; Chiara Indiani; Michael E O'Donnell; Qingfei Jiang; Myron F Goodman; Carmelo J Rizzo; R Stephen Lloyd
Journal:  Chem Res Toxicol       Date:  2008-09-13       Impact factor: 3.739

6.  Mutagenic potential of DNA-peptide crosslinks mediated by acrolein-derived DNA adducts.

Authors:  Irina G Minko; Ivan D Kozekov; Albena Kozekova; Thomas M Harris; Carmelo J Rizzo; R Stephen Lloyd
Journal:  Mutat Res       Date:  2007-08-07       Impact factor: 2.433

  6 in total

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