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A Review of the Role of the Sequence-Dependent Electrostatic Landscape in DNA Alkylation Patterns

机译:依赖序列的静电景观在DNA烷基化模式中的作用的综述。

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Alkylating agents,including environmental and endogenous carcinogens and DNA targeting antineoplastic agents,that adduct DNA via intermediates with significant cationic charge show a sequence selectively in their covalent bonding to nucleobases.The resulting patterns of alkylation eventually contribute to the agent-dependent distributions and types of mutations.The origin of the regioselective modification of DNA by electrophiles has been attributed to steric and/or electronic factors,but attempts to mechanistically model and predict alkylation patterns have had limited success.In this review,we present data consistent with the role of the intrinsic sequence-dependent electrostatic landscape(SDEL)in DNA that modulates the equilibrium binding of cations and the bonding of reactive charged alkylating agents to atoms that line the floor of the major groove of DNA.
机译:烷基化剂,包括环境和内源性致癌物以及靶向抗肿瘤剂的DNA,通过具有显着阳离子电荷的中间体加成DNA时,选择性地显示了它们与核碱基共价键合的序列。最终烷基化的模式最终导致了依赖于试剂的分布和类型亲电体对DNA进行区域选择性修饰的起源被归因于空间和/或电子因素,但尝试以机械方式建模和预测烷基化模式的尝试取得了有限的成功。 DNA中固有的依赖序列的静电景观(SDEL),可调节阳离子的平衡结合以及反应性带电烷基化剂与衬在DNA大槽底部的原子的键合。

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