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首页> 外文期刊>Journal of mass spectrometry: JMS >Tautomerization in gas-phase ion chemistry of isomeric C-8 deoxyguanosine adducts from phenol-induced DNA damage
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Tautomerization in gas-phase ion chemistry of isomeric C-8 deoxyguanosine adducts from phenol-induced DNA damage

机译:苯酚诱导的DNA损伤引起的异构C-8脱氧鸟苷加合物的气相离子化学互变异构

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Collision-induced dissociation (CID) of 8-(4′-hydroxyphenyl)- 2′-deoxyguanosine and 8-(2′-hydroxyphenyl)-2′-deoxyguanosine was investigated using sequential tandem mass spectrometry. These adducts represent biomarkers of DNA damage linked to phenolic radicals and were investigated to gain insight into the effects of chemical structure of a C-8 modification on fragmentation pathways of modified 2′-deoxyguanosine (dG). CID in MS2 of the deprotonated molecules of both the isomers generated the same product ion having the same m/z values. CID in MS3 of the product ion at m/z 242 and CID in MS4 experiments carried out on the selected product ions at m/z 225 and m/z 218 afford distinct fragmentation patterns. The conformational properties of isomeric product ions from CID showed that the ortho-isomers possess the unique ability to tautomerize through an intramolecular proton transfer between the phenolic OH group and the imine nitrogen (N7). Tautomerization of ortho-isomers to their keto-tautomers led to differences in their system of conjugated double bonds compared with either their enol-tautomer or the para-isomer. The charge redistribution through the N-7 site on the imidazole ring is a critical step in guanosine adduct fragmentation which is disrupted by the formation of the keto-tautomer. For this reason, different reaction pathways are observed for 8-(4′-hydroxyphenyl) -2′-deoxyguanosine and 8-(2′-hydroxyphenyl)-2′-deoxyguanosine. We present herein the dissociation and the gas-phase ion-molecule reactions for highly conjugated ions involved in the CID ion chemistry of the investigated adducts. These will be useful for those using tandem mass spectrometry for structural elucidation of C-8 modified dG adducts. This study demonstrates that the modification at the C-8 site of dG has the potential to significantly alter the reactivity of adducts. We also show the ability of tandem mass spectrometry to completely differentiate between the isomeric dG adducts investigated.
机译:使用顺序串联质谱法研究了8-(4'-羟基苯基)-2'-脱氧鸟苷和8-(2'-羟基苯基)-2'-脱氧鸟苷的碰撞诱导解离(CID)。这些加合物代表了与酚类自由基相关的DNA损伤的生物标志物,并进行了研究以深入了解C-8修饰的化学结构对修饰的2'-脱氧鸟苷(dG)断裂途径的影响。两种异构体的去质子化分子在MS2中的CID产生具有相同m / z值的相同产物离子。产物离子的MS3中的CID在m / z 242处和MS4实验中在m / z 225和m / z 218上对所选产物离子进行的CID提供了不同的碎片模式。来自CID的异构产物离子的构象性质表明,邻位异构体具有通过酚OH基团与亚胺氮(N7)之间的分子内质子转移而互变异构的独特能力。与它们的烯醇-互变异构体或对-异构体相比,邻位异构体向酮-互变异构体的互变异构导致其共轭双键系统的差异。通过咪唑环上N-7位的电荷重新分布是鸟苷加合物片段化的关键步骤,该过程被酮-互变异构体的形成破坏。因此,对于8-(4'-羟基苯基)-2'-脱氧鸟苷和8-(2'-羟基苯基)-2'-脱氧鸟苷观察到不同的反应途径。我们在此介绍了参与研究的加合物的CID离子化学的高度共轭离子的解离和气相离子分子反应。这些对于使用串联质谱分析C-8修饰的dG加合物的结构将是有用的。这项研究表明,dG C-8位点的修饰具有显着改变加合物反应性的潜力。我们还显示了串联质谱法能够完全区分所研究的异构dG加合物之间的能力。

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