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寡核苷酸中黄曲霉毒素B1-鸟嘌呤加合物的质谱鉴定和定位图谱分析

Mass spectral identification and positional mapping of aflatoxin B1-guanine adducts in oligonucleotides.

作者信息

Marzilli L A, Wang D, Kobertz W R, Essigmann J M, Vouros P

机构信息

Department of Chemistry, Northeastern University, Boston, Massachusetts 02115, USA.

出版信息

J Am Soc Mass Spectrom. 1998 Jul;9(7):676-82. doi: 10.1016/S1044-0305(98)00039-7.

Abstract

The biological consequences of a carcinogen-DNA adduct are defined by the structure of the lesion and its position within the genome. Electrospray ionization ion trap mass spectrometry (ESI-ITMS) is shown here to be a sensitive and rapid approach capable of defining both of these parameters. Three isomeric oligonucleotides of the sequence 5'-CCGGAGGCC modified by the potent human carcinogen aflatoxin B1 (AFB1) at different guanines were analyzed by ESI-ITMS. All three samples possessed the same molecular ion confirming the presence of an intact aflatoxin moiety in each oligonucleotide. In addition, each sample displayed a characteristic fragmentation pattern that permitted unambiguous identification of the site of modification within the sequence. Furthermore, an AFB1-modified oligonucleotide was converted under alkaline conditions to its more stable formamidopyrimidine (FAPY) derivative. Analysis of this sample revealed the presence of a molecular ion corresponding to the presence of the FAPY adduct and a distinctive fragmentation pattern that paralleled the known chemical stability of the FAPY metabolite. This approach should be of general use in the determination of not only the nature and site of covalent modifications, but also the chemical stability of DNA adducts.

摘要

致癌物 - DNA加合物的生物学后果由损伤的结构及其在基因组中的位置决定。本文展示了电喷雾电离离子阱质谱法(ESI - ITMS)是一种能够确定这两个参数的灵敏且快速的方法。通过ESI - ITMS分析了由强效人类致癌物黄曲霉毒素B1(AFB1)在不同鸟嘌呤处修饰的三种5'-CCGGAGGCC序列的同分异构寡核苷酸。所有三个样品都具有相同的分子离子,证实了每个寡核苷酸中存在完整的黄曲霉毒素部分。此外,每个样品都显示出一种特征性的碎片化模式,使得能够明确鉴定序列中的修饰位点。此外,一种AFB1修饰的寡核苷酸在碱性条件下转化为其更稳定的甲酰胺嘧啶(FAPY)衍生物。对该样品的分析揭示了存在与FAPY加合物存在相对应的分子离子以及与FAPY代谢物已知化学稳定性平行的独特碎片化模式。这种方法不仅在确定共价修饰的性质和位点方面,而且在确定DNA加合物的化学稳定性方面都应具有普遍用途。

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