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首页> 外文期刊>Chemical research in toxicology >A metabolic activation mechanism of 7H-dibenzo(c,g)carbazole via o-quinone. Part 2: covalent adducts of 7H-dibenzo(c,g)carbazole-3,4-dione with nucleic acid bases and nucleosides.
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A metabolic activation mechanism of 7H-dibenzo(c,g)carbazole via o-quinone. Part 2: covalent adducts of 7H-dibenzo(c,g)carbazole-3,4-dione with nucleic acid bases and nucleosides.

机译:7H-二苯并(c,g)咔唑通过邻醌的代谢激活机制。第2部分:7H-二苯并(c,g)咔唑-3,4-二酮与核酸碱基和核苷的共价加合物。

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摘要

7H-dibenzo[c,g]carbazole (DBC) is a potent multispecies, multisite carcinogen present in the environment. The metabolic activation pathways of DBC are not completely known. It is hypothesized that DBC may be metabolically activated by oxidation to the reactive Michael acceptor o-quinones, which can form stable and depurinating DNA adducts. The synthesis of DBC-3,4-dione has been previously reported by this research group. In the present article, we describe the synthesis and chemical structural elucidation of nine DBC-nucleic acid adducts produced from reactions of DBC-3,4-dione with Ade, Cyt, 2'-deoxyguanosine (dGuo), 2'-deoxycytidine (dCyd), and Guo. Adducts were isolated from reaction mixtures by HPLC and analyzed using MS including elemental compositions and collision-activated dissociation (CAD), (1)H NMR, and two-dimensional chemical shift correlation spectroscopy (COSY) NMR. The adducts, 7-[3,4-dione-DBC-1-yl]-Ade, N4-[3,4-dione-DBC-1-yl]-Cyt, 5-[3,4-dione-DBC-1-yl]-Cyt, two conformational isomers of N2-[3,4-dihydroxy-DBC-1-yl]-dGuo, and two conformational isomers of N2-[3,4-dihydroxy-DBC-1-yl]-Guo, were characterized. Two adducts from reactions of DBC-3,4-dione with dCyd were identified by MS but not fully characterized by NMR due to instability of the adducts. Under similar conditions, the reactions of DBC-3,4-dione with Gua and 2'-deoxyadenosine (dAdo) did not result in an identifiable adduct. Liver DNA adducts from mice treated topically with DBC-3,4-dione (100 microg) in dimethyl sulfoxide/acetone (15/85, 100 microL) were identified with 32P-postlabeling. The major adduct chromatographically matched one of the adducts formed from livers of DBC-treated mouse (adduct 3) using identical conditions.
机译:7H-二苯并[c,g]咔唑(DBC)是存在于环境中的强力多物种,多场所致癌物。 DBC的代谢活化途径尚不完全清楚。据推测,DBC可以通过氧化成反应性迈克尔受体邻醌而被代谢活化,后者可以形成稳定的和脱嘌呤的DNA加合物。该研究小组先前已报道了DBC-3,4-二酮的合成。在本文中,我们描述了由DBC-3,4-二酮与Ade,Cyt,2'-脱氧鸟苷(dGuo),2'-脱氧胞苷(dCyd)反应生成的9种DBC-核酸加合物的合成和化学结构解析)和郭。通过HPLC从反应混合物中分离出加合物,并使用MS进行分析,包括元素组成和碰撞活化解离(CAD),(1)H NMR和二维化学位移相关光谱(COSY)NMR。加合物7- [3,4-二酮-DBC-1-基] -Ade,N4- [3,4-二酮-DBC-1-基] -Cyt,5- [3,4-二酮-DBC- 1-yl] -Cyt,N2- [3,4-二羟基-DBC-1-yl] -dGuo的两个构象异构体和N2- [3,4-二羟基-DBC-1-yl]-的两个构象异构体郭有特色。 MS鉴定了DBC-3,4-二酮与dCyd的反应中的两个加合物,但由于加合物的不稳定性,没有通过NMR进行充分表征。在相似的条件下,DBC-3,4-二酮与Gua和2'-脱氧腺苷(dAdo)的反应不会导致可识别的加合物。用32P后标记鉴定了用DBC-3,4-二酮(100微克)在二甲亚砜/丙酮(15/85,100微升)中局部处理的小鼠的肝脏DNA加合物。在相同的条件下,主要加合物在色谱上与由DBC处理的小鼠肝脏形成的加合物之一匹配(加合物3)。

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