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首页> 外文期刊>Chemical research in toxicology >Characterization of 2'-deoxyadenosine adducts derived from 4-oxo-2-nonenal, a novel product of lipid peroxidation.
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Characterization of 2'-deoxyadenosine adducts derived from 4-oxo-2-nonenal, a novel product of lipid peroxidation.

机译:表征脂质过氧化的新产物4-氧代-2-壬烯醛的2'-脱氧腺苷加合物。

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Analysis of the reaction between 2'-deoxyadenosine and 4-oxo-2-nonenal by liquid chromatography/mass spectrometry revealed the presence of three major products (adducts A(1), A(2), and B). Adducts A(1) and A(2) were isomeric; they interconverted at room temperature, and they each readily dehydrated to form adduct B. The mass spectral characteristics of adduct B obtained by collision-induced dissociation coupled with multiple tandem mass spectrometry were consistent with those expected for a substituted etheno adduct. The structure of adduct B was shown by NMR spectroscopy to be consistent with the substituted etheno-2'-deoxyadenosine adduct 1' '-[3-(2'-deoxy-beta-D-erythropentafuranosyl)-3H-imidazo[2, 1-i]purin-7-yl]heptane-2' '-one. Unequivocal proof of structure came from the reaction of adducts A(1) and A(2) (precursors of adduct B) with sodium borohydride. Adducts A(1) and A(2) each formed the same reduction product, which contained eight additional hydrogen atoms. The mass spectral characteristics of this reduction product established that the exocyclic amino group (N(6)) of 2'-deoxyadenosine was attached to C-1 of the 4-oxo-2-nonenal. The reaction of 4-oxo-2-nonenal with calf thymus DNA was also shown to result in the formation of substituted ethano adducts A(1) and A(2) and substituted etheno adduct B. Adduct B was formed in amounts almost 2 orders of magnitude greater than those of adducts A(1) and A(2). This was in keeping with the observed stability of the adducts. The study presented here has provided additional evidence which shows that 4-oxo-2-nonenal reacts efficiently with DNA to form substituted etheno adducts.
机译:通过液相色谱/质谱法分析2'-脱氧腺苷和4-oxo-2-壬烯醛之间的反应,发现存在三种主要产物(加合物A(1),A(2)和B)。加合物A(1)和A(2)是异构体;它们在室温下相互转化,并且每个都易于脱水形成加合物B。通过碰撞诱导解离与多串联质谱联用获得的加合物B的质谱特征与取代的乙炔加合物所预期的一致。 NMR光谱显示加合物B的结构与取代的乙炔-2'-脱氧腺苷加合物1''-[3-(2'-脱氧-β-D-赤藓型呋喃呋喃糖基)-3H-咪唑并[2,1 -i]嘌呤-7-基]庚烷-2'-一。结构的明确证据来自加合物A(1)和A(2)(加合物B的前体)与硼氢化钠的反应。加合物A(1)和A(2)各自形成相同的还原产物,其中包含八个额外的氢原子。该还原产物的质谱特性确定了2'-脱氧腺苷的环外氨基(N(6))连接到4-氧代-2-壬烯醛的C-1上。还显示了4-氧代-2-壬烯醛与小牛胸腺DNA的反应导致形成取代的乙醇加合物A(1)和A(2)和取代的乙炔加合物B.形成的加合物B的量几乎为2个数量级的数量级大于加合物A(1)和A(2)的数量级。这与观察到的加合物的稳定性一致。此处提供的研究提供了其他证据,表明4-氧代-2-壬烯醛与DNA有效反应形成了取代的乙炔加合物。

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