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首页> 外文期刊>Nucleic acids research >DNA sequence selectivity of guanine–N7 alkylation by nitrogen mustards
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DNA sequence selectivity of guanine–N7 alkylation by nitrogen mustards

机译:氮芥对鸟嘌呤–N7烷基化的DNA序列选择性

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摘要

Nitrogen mustards alkylate DNA primarily at the N7 position of guanine. Using an approach analogous to that of the Maxam–Gilbert procedure for DNA sequence analysis, we have examined the relative frequencies of alkylation for a number of nitrogen mustards at different guanine–N7 sites on a DNA fragment of known sequence. Most nitrogen mustards were found to have similar patterns of alkylation, with the sites of greatest alkylation being runs of contiguous guanines, and relatively weak alkylation at isolated guanines. Uracil mustard and quinacrine mustard, however, were found to have uniquely enhanced reaction with at least some 5'–PyGCC–3' and 5'–GT–3' sequences, respectively. In addition, quinacrine mustard showed a greater reaction at runs of contiguous guanines than did other nitrogen mustards, whereas uracil mustard showed little preference for these sequences. A comparison of the sequence–dependent variations of molecular electrostatic potential at the N7–position of guanine with the sequence dependent variations of alkylation intensity for mechlorethamine and L–phenylalanine mustard showed a good correlation in some regions of the DNA, but not others. It is concluded that electrostatic interactions may contribute strongly to the reaction rates of cationic compounds such as the reactive aziridinium species of nitrogen mustards, but that other sequence selectivities can be introduced in different nitrogen mustard derivatives.
机译:氮芥子酸主要在鸟嘌呤的N 7 位置使DNA烷基化。使用类似于Maxam–Gilbert程序进行DNA序列分析的方法,我们检查了已知序列DNA片段上不同鸟嘌呤– N7位点上许多氮芥的烷基化相对频率。发现大多数氮芥具有类似的烷基化模式,其中最大烷基化的位点是连续的鸟嘌呤,而分离的鸟嘌呤的烷基化相对较弱。然而,发现尿嘧啶芥子和奎纳克林芥子分别与至少一些5'-PyGCC-3'和5'-GT-3'序列具有独特的增强反应。另外,奎纳克林芥子在连续鸟嘌呤的运行中比其他氮芥在更大的反应,而尿嘧啶芥子对这些序列几乎没有偏好。比较鸟嘌呤N 7 -位上分子静电势的序列依赖性变化与甲氯乙胺和L-苯丙氨酸芥子油的烷基化强度的序列依赖性变化表明,在一些地区DNA,而不是其他。可以得出结论,静电相互作用可能会极大地促进阳离子化合物(例如氮芥的反应性叠氮strongly物种)的反应速率,但可以在不同的氮芥衍生物中引入其他序列选择性。

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