Formation of a substituted 1,N6-etheno-2′-deoxyadenosine adduct by lipid hydroperoxide-mediated generation of 4-oxo-2-nonenal

被引:60
作者
Rindgen, D [1 ]
Lee, SH [1 ]
Nakajima, M [1 ]
Blair, IA [1 ]
机构
[1] Univ Penn, Sch Med, Ctr Canc Pharmacol, Philadelphia, PA 19104 USA
关键词
D O I
10.1021/tx0000771
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Analysis of the reaction between 2'-deoxyadenosine and 13-hydroperoxylinoleic acid by liquid chromatography/constant neutral loss mass spectrometry revealed the presence of two major products (adducts A and B). Adduct A was shown to be a mixture of two isomers (A(1) and A(2)) that each decomposed with the loss of water to form adduct B. The mass spectral characteristics of adduct B were consistent with the substituted 1,N-6-etheno-2'-deoxyadensoine adduct 1 "-[3-(2'-deoxy-beta-D-erythro- pentafuranosyl)-3H-imidazo[2,1-i]purin-7-yl]heptan-2 "-one. Adducts A(1), A(2), and B were formed when 2'-deoxyadenosine was treated with synthetic 4-oxo-2-nonenal, which suggested that it was formed by the breakdown of 13-hydroperoxylinoleic acid. A substantial increase in the rate of formation of adducts A(1), A(2), and B was observed when 13-hydroperoxylinoleic acid and 2'-deoxyadenosine were incubated in the presence of Fe-II. Thus, 4-oxo-2-nonenal was most likely formed by a homolytic process. Although adducts A(1), A(2), and B were formed in the reaction between 4-hydroxy-2-nonenal and 2'-deoxyadenosine, a number of additional products were observed. This suggested that 4-hydroxy-2-nonenal was not a precursor in the formation of 4-oxo-2-nonenal from 13-hydroperoxylinoleic acid. This study has provided additional evidence which shows that 4-oxo-2-nonenal is a major product of lipid peroxidation and that it reacts efficiently with DNA to form substituted etheno adducts.
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页码:846 / 852
页数:7
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共 42 条
  • [31] Covalent modifications to 2′-deoxyguanosine by 4-oxo-2-nonenal, a novel product of lipid peroxidation
    Rindgen, D
    Nakajima, M
    Wehrli, S
    Xu, KY
    Blair, IA
    [J]. CHEMICAL RESEARCH IN TOXICOLOGY, 1999, 12 (12) : 1195 - 1204
  • [32] Detection of free radicals produced from the reaction of cytochrome P-450 with linoleic acid hydroperoxide
    Rota, C
    Barr, DP
    Martin, MV
    Guengerich, FP
    Tomasi, A
    Mason, RP
    [J]. BIOCHEMICAL JOURNAL, 1997, 328 : 565 - 571
  • [33] SODUM RS, 1991, CANCER RES, V51, P137
  • [34] Strong dependence of the lipid peroxidation product spectrum whether Fe2+/O2 or Fe3+/O2 is used as oxidant
    Spiteller, P
    Spiteller, G
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-LIPIDS AND LIPID METABOLISM, 1998, 1392 (01): : 23 - 40
  • [35] Reactive oxygen-mediated protein oxidation in aging and disease
    Stadtman, ER
    Berlett, BS
    [J]. CHEMICAL RESEARCH IN TOXICOLOGY, 1997, 10 (05) : 485 - 494
  • [36] INVESTIGATION OF THE ADDUCTS FORMED BY REACTION OF MALONDIALDEHYDE WITH ADENOSINE
    STONE, K
    KSEBATI, MB
    MARNETT, LJ
    [J]. CHEMICAL RESEARCH IN TOXICOLOGY, 1990, 3 (01) : 33 - 38
  • [37] STEADY-STATE KINETICS OF ANAEROBIC REACTION OF SOYBEAN LIPOXYGENASE-1 WITH LINOLEIC-ACID AND 13-L-HYDROPEROXYLINOLEIC ACID
    VERHAGEN, J
    VELDINK, GA
    EGMOND, MR
    VLIEGENTHART, JFG
    BOLDINGH, J
    VANDERSTAR, J
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1978, 529 (03) : 369 - 379
  • [38] WINTER CK, 1986, CANCER RES, V46, P5682
  • [39] Structural characterization of a 4-hydroxy-2-alkenal-derived fluorophore that contributes to lipoperoxidation-dependent protein cross-linking in aging and degenerative disease
    Xu, GZ
    Sayre, LM
    [J]. CHEMICAL RESEARCH IN TOXICOLOGY, 1998, 11 (04) : 247 - 251
  • [40] YEOLA SN, 1994, P 42 ASMS C MASS SPE, P367