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Screening for DNA Alkylation Mono and Cross-Linked Adducts with a Comprehensive LC-MS3 Adductomic Approach

机译:使用全面的LC-MS3原子吸收法筛选DNA烷基化的单链和交联加合物

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摘要

A high-resolution/accurate-mass DNA adductomic approach was developed to investigate anticipated and unknown DNA adducts induced by DNA alkylating agents in biological samples. Two new features were added to a previously developed approach to significantly broaden its scope, versatility, and selectivity. First, the neutral loss of a base (guanine, adenine, thymine, or cytosine) was added to the original methodologys neutral loss of the 2'-deoxyribose moiety to allow for the detection of all DNA base adducts. Second, targeted detection of anticipated DNA adducts based on the reactivity of the DNA alkylating agent was demonstrated by inclusion of an ion mass list for data dependent triggering of MS2 fragmentation events and subsequent MS3 fragmentation. Additionally, untargeted screening of the samples, based on triggering of an MS2 fragmentation event for the most intense ions of the full scan, was included for detecting unknown DNA adducts. The approach was tested by screening for DNA mono and cross-linked adducts in purified DNA and in DNA extracted from cells treated with PR104A, an experimental DNA alkylating nitrogen mustard prodrug currently under investigation for the treatment of leukemia. The results revealed the ability of this new DNA adductomic approach to detect anticipated and unknown PR104A-induced mono and cross-linked DNA adducts in biological samples. This methodology is expected to be a powerful tool for screening for DNA adducts induced by endogenous or exogenous exposures.
机译:开发了一种高分辨率/精确质量的DNA加成分子方法,以研究生物样品中DNA烷基化剂诱导的预期和未知的DNA加合物。在以前开发的方法中添加了两个新功能,以大大拓宽其范围,多功能性和选择性。首先,将中性丢失碱基(鸟嘌呤,腺嘌呤,胸腺嘧啶或胞嘧啶)添加到原始方法中,将2'-脱氧核糖部分中性丢失,以检测所有DNA碱基加合物。第二,通过包含离子质量列表证明了基于DNA烷基化剂反应性的预期DNA加合物的靶向检测,该离子质量列表用于数据触发MS2片段化事件和随后的MS3片段化。另外,基于对全扫描中最强离子的MS2碎片事件的触发,对样品进行了非目标筛选,以检测未知的DNA加合物。通过筛选纯化的DNA和从用PR104A处理的细胞中提取的DNA中提取的DNA单和交联加合物来测试该方法,PR104A是一种正在研究中的用于治疗白血病的实验性DNA烷化氮芥前药。结果揭示了这种新的DNA叠加方法能够检测生物样品中预期的和未知的PR104A诱导的单和交联DNA加合物的能力。该方法学有望成为筛选内源性或外源性暴露诱导的DNA加合物的有力工具。

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