Literature DB >> 8318647

Characterization of 2'-deoxycytidine and 2'-deoxyuridine adducts formed in reactions with acrolein and 2-bromoacrolein.

A Chenna1, C R Iden.   

Abstract

The products of the reaction of the mutagenic aldehydes, acrolein and 2-bromoacrolein, with 2'-deoxycytidine and 2'-deoxyuridine have been determined. These products, formed at physiological conditions, were isolated by reverse-phase HPLC and characterized by UV, 1H NMR, fast atom bombardment MS, electrospray MS, and chemical transformation. The reaction of 2'-deoxycytidine with acrolein and 2-bromoacrolein produced the exocyclic compounds 3-(2'-deoxyribosyl)-7,8,9-trihydro-7-hydroxypyrimido[3,4- c]pyrimidin-2-one and 3-(2'-deoxyribosyl)-7,8,9-trihydro-7-hydroxy-8-bromopyrimido [3,4-c] pyrimidin-2-one, respectively. In addition to the chiral centers of deoxyribose, one new chiral center was formed from C-1 of acrolein and two new chiral centers were formed from C-1 and C-2 of 2-bromoacrolein, creating a mixture of diastereomers for each product. These compounds are not stable in basic solution and undergo ring opening and hydrolytic deamination, resulting in 2'-deoxyuridine adducts. The N3-alkylated 2'-deoxyuridines were also synthesized by permitting 2'-deoxyuridine to react with 2-bromoacrolein and acrolein. An unstable intermediate, N3-(2"-bromo-3"-oxopropyl)-2'-deoxyuridine, was also isolated and characterized from the reaction with 2-bromoacrolein. The reaction of 2'-deoxyuridine with acrolein gave N3-(3"-oxopropyl)-2'-deoxyuridine as the major product, which was reduced to its corresponding alcohol with NaBH4. Reactions of 2'-deoxycytidine with 2-bromoacrolein and acrolein proceed most rapidly at acidic or neutral pH; however, 2'-deoxyuridine reacts most rapidly at neutral or basic pH.

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Year:  1993        PMID: 8318647     DOI: 10.1021/tx00033a003

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


  8 in total

1.  Formation of fused-ring 2'-deoxycytidine adducts from 1-chloro-3-buten-2-one, an in vitro 1,3-butadiene metabolite, under in vitro physiological conditions.

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Journal:  Chem Res Toxicol       Date:  2013-09-25       Impact factor: 3.739

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

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3.  Thiol-activated DNA damage by α-bromo-2-cyclopentenone.

Authors:  Mostafa I Fekry; Nathan E Price; Hong Zang; Chaofeng Huang; Michael Harmata; Paul Brown; J Scott Daniels; Kent S Gates
Journal:  Chem Res Toxicol       Date:  2011-01-20       Impact factor: 3.739

Review 4.  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

5.  1,N2-cyclic deoxyguanosine adducts and guanine adducts of 2-haloacroleins. Isolation, characterization, isomerization and stability.

Authors:  E Eder; C Hoffman
Journal:  Arch Toxicol       Date:  1994       Impact factor: 5.153

6.  Chemistry of muconaldehydes of possible relevance to the toxicology of benzene.

Authors:  C Bleasdale; G Kennedy; J O MacGregor; J Nieschalk; K Pearce; W P Watson; B T Golding
Journal:  Environ Health Perspect       Date:  1996-12       Impact factor: 9.031

Review 7.  Formation and repair of unavoidable, endogenous interstrand cross-links in cellular DNA.

Authors:  Kurt Housh; Jay S Jha; Tuhin Haldar; Saosan Binth Md Amin; Tanhaul Islam; Amanda Wallace; Anuoluwapo Gomina; Xu Guo; Christopher Nel; Jesse W Wyatt; Kent S Gates
Journal:  DNA Repair (Amst)       Date:  2020-12-24

8.  Application of DNA adductomics to soil bacterium Sphingobium sp. strain KK22.

Authors:  Robert A Kanaly; Ruggero Micheletto; Tomonari Matsuda; Youko Utsuno; Yasuhiro Ozeki; Natsuko Hamamura
Journal:  Microbiologyopen       Date:  2015-08-25       Impact factor: 3.139

  8 in total

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