Chiarelli M Paul, Chang Hui-Fang, Olsen Kenneth W, Barbacci Damon, Huffer Duane M, Cho Bongsup P
Department of Chemistry, Loyola University Chicago, Chicago, Illinois 60626, USA.
Chem Res Toxicol. 2003 Oct;16(10):1236-41. doi: 10.1021/tx0340798.
The product ion formation characteristics of four diastereomeric deoxyadenosine adducts formed by the reaction of the syn and anti diastereomers of trans-3,4-dihydroxy-5,5a-epoxy-3,4,5,5a-tetrahydrobenzo[ghi]fluoranthene are studied by matrix-assisted laser desorption ionization and postsource decay (PSD) to determine fragmentation pathways that may permit differentiation of their structures. The two adducts derived from each diol-epoxide with DNA differ in structure based on the cis/trans arrangement of the 3'-hydroxyl group on the benzo[ghi]fluoranthene (B[ghi]F) and the adenine base bound to the B[ghi]F 5a carbon. The two adduct diastereomers with the cis adenine-3'-hydroxyl configuration produce product ions at m/z 394 and m/z 510 formed by the loss of water that are not observed in the PSD spectra of the two trans isomers. The data suggest a mechanism of water loss that is initiated by a hydrogen-bonding interaction between the charge-bearing proton on the N1 atom and the 3'-hydroxyl oxygen on the polycyclic aromatic hydrocarbon (PAH). Fragmentation is initiated by the transfer of the adenine N1 proton from the nitrogen to the PAH 3'-hydroxyl oxygen and inductive cleavage of the C3-O(3) bond to form a benzylic carbocation on B[ghi]F. The proposed mechanism is supported by semiempirical molecular modeling calculations.
通过基质辅助激光解吸电离和源后衰变(PSD)研究了反式-3,4-二羟基-5,5a-环氧-3,4,5,5a-四氢苯并[ghi]荧蒽的顺式和反式非对映异构体反应形成的四种非对映异构脱氧腺苷加合物的生成特征,以确定可能有助于区分其结构的碎片化途径。每种二醇环氧化物与DNA形成的两种加合物在结构上有所不同,这取决于苯并[ghi]荧蒽(B[ghi]F)上3'-羟基与与B[ghi]F 5a碳结合的腺嘌呤碱基的顺式/反式排列。具有顺式腺嘌呤-3'-羟基构型的两种加合物非对映异构体在m/z 394和m/z 510处产生通过失水形成的产物离子,而在两种反式异构体的PSD光谱中未观察到这些离子。数据表明了一种失水机制,该机制由N1原子上带电荷的质子与多环芳烃(PAH)上的3'-羟基氧之间的氢键相互作用引发。碎片化由腺嘌呤N1质子从氮转移到PAH 3'-羟基氧以及C3-O(3)键的诱导裂解引发,从而在B[ghi]F上形成苄基碳正离子。所提出的机制得到了半经验分子建模计算的支持。