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Oxygen independent DNA interstrand cross-link formation by a nucleotide radical

机译:氧独立的DNA链间交联通过核苷酸自由基形成

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A 5-(2'-Deoxyuridinyl)methyl radical (1) was independently generated from three photochemical precursors and is the first example of a DNA radical that forms interstrand cross-links. Oxygen labeling experiments support generation of 1 by all precursors. Interstrand cross-links are produced upon irradiation of DNA containing any of the precursors. Cross-linking occurs via reaction with the opposing 2'deoxyadenosine and is independent of O-2. The independence of cross-link formation on O-2 is explained by kinetic analysis, which shows that the radical reacts reversibly with O-2. Examination of the effects of glutathione on cross-link formation under anaerobic conditions suggests that adoption of the synconformation by 1 is the rate-limiting step in the process. Interstrand cross-link formation is reversible in the presence of a good nucleophile. The stability of the interstrand cross-link suggests that the isolated molecule is a rearrangement product of that formed in solution. The rearrangement is a consequence of the isolation procedure but also occurs slowly in solution. Oxygen independent cross-link formation may be useful for the purposeful damage of DNA in hypoxic tumor cells, where O-2 is deficient.
机译:5-(2'-Deoxyuridinyl)methyl基(1)是由三个光化学前体独立生成的,是形成链间交联的DNA基的第一个例子。氧标记实验支持所有前体生成1。在辐照含有任何前体的DNA时会产生链间交联。交联是通过与相对的2'脱氧腺苷反应而发生的,并且独立于O-2。动力学分析解释了O-2上交联形成的独立性,这表明自由基与O-2可逆地反应。谷胱甘肽对厌氧条件下交联形成的影响的研究表明,以1的形式通过共轭形成是过程中的限速步骤。在良好的亲核试剂存在下,链间交联形成是可逆的。链间交联的稳定性表明,分离的分子是溶液中形成的分子的重排产物。重排是隔离程序的结果,但在溶液中缓慢发生。氧独立的交联形成可能对缺氧的O-2缺乏的肿瘤细胞中DNA的有目的破坏有用。

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