Annan R S, Giese R W, Vouros P
Department of Chemistry, Northeastern University, Boston, Massachusetts 02115.
Anal Biochem. 1990 Nov 15;191(1):86-95. doi: 10.1016/0003-2697(90)90392-m.
Fast atom bombardment (FAB) and tandem mass spectrometry (MS/MS) are shown to be useful methods for the detection and structural characterization of nanogram amounts of amino polyaromatic hydrocarbon-nucleoside DNA adducts. The positive ion spectra of four aromatic amine guanosine adducts were studied in detail. The FAB spectra of these adducts exhibit an [MH]+ ion and a more abundant aglycon fragment ion, [AH2]+, which results from the loss of the deoxyribose sugar. The sensitivity of the adducts to FAB was enhanced by preparing trimethylsilyl (TMS) ether derivatives. High-quality full-scan spectra could be obtained on less than 70 ng of the derivatized adducts without signal averaging. With a B/E-linked scan of the [MH]+ ion for the TMS2 species, these same adducts could be detected by examination of their metastable ion spectra at levels as low as 4-5 ng (S/N greater than 10). Collision-induced dissociation (CID) of the [MH]+ ion yields the aglycon fragment and an ion, S1, which results from cleavage through the sugar. The CID spectrum of the aglycon [AH2]+ ion is much more useful, providing structural information relating to the base, the polyaromatic hydrocarbon, and, possibly, the site of covalent attachment. Differentiation of isomeric aminophenanthrene-guanine adducts was demonstrated on the basis of the CID spectra of their respective [AH2]+ ions. The use of TMS derivatives also improves the sensitivity of these methods.
快原子轰击(FAB)和串联质谱(MS/MS)被证明是检测和结构表征纳克量的氨基多环芳烃 - 核苷DNA加合物的有用方法。详细研究了四种芳香胺鸟苷加合物的正离子光谱。这些加合物的FAB光谱显示出一个[MH]+离子和一个更丰富的糖苷配基碎片离子[AH2]+,它是由脱氧核糖糖的丢失产生的。通过制备三甲基硅烷基(TMS)醚衍生物提高了加合物对FAB的灵敏度。在不进行信号平均的情况下,对少于70 ng的衍生化加合物可获得高质量的全扫描光谱。对于TMS2物种,通过对[MH]+离子进行B/E关联扫描,这些相同的加合物可以通过检查其亚稳离子光谱在低至4 - 5 ng的水平下被检测到(信噪比大于10)。[MH]+离子的碰撞诱导解离(CID)产生糖苷配基碎片和一个离子S1,它是通过糖的裂解产生的。糖苷配基[AH2]+离子的CID光谱更有用,提供了与碱基、多环芳烃以及可能的共价连接位点相关的结构信息。基于各自[AH2]+离子的CID光谱证明了异构氨基酚 - 鸟嘌呤加合物的区分。TMS衍生物的使用也提高了这些方法的灵敏度。