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Mechanism of aromatic amine carcinogen bypass by the Y-family polymerase Dpo4

机译:Y族聚合酶Dpo4绕过芳香胺致癌物的机理

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摘要

Bulky DNA damage inhibits DNA synthesis by replicative polymerases and often requires the action of error prone bypass polymerases. The exact mechanism governing adduct-induced mutagenesis and its dependence on the DNA sequence context remains unclear. In this work, we characterize Dpo4 binding conformations and activity with DNA templates modified with the carcinogenic DNA adducts, 2-aminofluoene (AF) or N-acetyl-2-aminofluorene (AAF), using single-molecule FRET (smFRET) analysis and DNA synthesis extension assays. We find that in the absence of dNTPs, both adducts alter polymerase binding as measured by smFRET, but the addition of dNTPs induces the formation of a ternary complex having what appears to be a conformation similar to the one observed with an unmodified DNA template. We also observe that the misincorporation pathways for each adduct present significant differences: while an AF adduct induces a structure consistent with the previously observed primer-template looped structure, its acetylated counterpart uses a different mechanism, one consistent with a dNTP-stabilized misalignment mechanism.
机译:庞大的DNA损伤会通过复制性聚合酶抑制DNA合成,通常需要易错旁路聚合酶的作用。控制加合物诱导的诱变及其对DNA序列背景的依赖性的确切机制尚不清楚。在这项工作中,我们使用单分子FRET(smFRET)分析和DNA,通过用致癌DNA加合物,2-氨基芴(AF)或N-乙酰基-2-氨基芴(AAF)修饰的DNA模板表征Dpo4结合构象和活性。合成延伸测定。我们发现,在不存在dNTP的情况下,两个加合物均通过smFRET测量改变了聚合酶的结合,但是dNTPs的添加诱导了三元复合物的形成,该三元复合物的构象似乎与未修饰的DNA模板相似。我们还观察到每种加合物的错误掺入途径存在显着差异:尽管AF加合物诱导的结构与先前观察到的引物-模板环状结构一致,但其乙酰化对应物使用了不同的机制,一个与dNTP稳定的错位机制一致。

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