首页> 美国卫生研究院文献>Nucleic Acids Research >In vitro replication by prokaryotic and eukaryotic polymerases on DNA templates containing site-specific and stereospecific benzoapyrene-78-dihydrodiol-910-epoxide adducts.
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In vitro replication by prokaryotic and eukaryotic polymerases on DNA templates containing site-specific and stereospecific benzoapyrene-78-dihydrodiol-910-epoxide adducts.

机译:通过原核和真核聚合酶在含有位点特异性和立体特异性苯并a py-78-二氢二醇-910-环氧加合物的DNA模板上进行体外复制。

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摘要

DNA adducts of the environmental carcinogen benzo[a]pyrene-7,8-dihydrodiol-9,10-epoxide (BPDE) interact stereospecifically with prokaryotic and eukaryotic polymerases in vitro. Toward understanding the capacity to replicate past different diastereomers of BPDE at specific sites in DNA, six deoxyoligonucleotides, each 33 bases long, were constructed with stereochemically defined BPDE adducts on adenine N6 at position two of the human N-ras codon 61. Four polymerases that were studied under single encounters with the template-primer complex terminated synthesis one base 3' to the lesion with all the adducted templates. When multiple encounters between polymerase and substrate were permitted, each of the polymerases analyzed revealed a unique pattern for a given adducted template. The general replication pattern was encompassed under two categories, reflecting the significance of the R and S configurations of C10 of the pyrenyl ring attached to the single-stranded DNA template. Furthermore, within each of these categories, every polymerase demonstrated distinct quantitative differences in product accumulation at a given site, for the various adducted templates. Among the polymerases utilized in this study, exonuclease-deficient Klenow fragment of polymerase I (exo- KF) exhibited the most efficient translesion synthesis resulting in approximately 16% full-length products with the modified templates bearing adducts with C10-S configuration. In contrast, chain elongation with bacteriophage T4 DNA polymerase bearing an active 3'-->5' exonucleolytic activity was most strongly inhibited by all six BPDE-adducted templates. Misincorporation of A opposite the adduct occurred in all the templates when polymerized with Sequenase, whereas exo- KF preferentially incorporated C opposite the C10-R BPDE adducts and A opposite the C10-S BPDE adducts.
机译:环境致癌物苯并[a] py-7,8-二氢二醇-9,10-环氧化物(BPDE)的DNA加合物在体外与原核和真核聚合酶发生立体定向相互作用。为了理解在DNA特定位点上复制过去的BPDE不同非对映异构体的能力,在人N-ras密码子61的第2位上,用立体化学定义的BPDE加合物在腺嘌呤N6上构建了6个长33个碱基的脱氧寡核苷酸。在一次实验中研究了模板-引物复合物终止的损伤与合成的所有模板的3'碱基的合成。当聚合酶和底物之间多次接触时,每种分析的聚合酶都显示出给定加合物模板的独特模式。普通复制模式包括两类,反映了与单链DNA模板相连的the环的C10的R和S构型的重要性。此外,在这些类别的每一个类别中,对于各种加成模板,每种聚合酶在给定位点的产物积累中均表现出明显的定量差异。在这项研究中使用的聚合酶中,聚合酶I的核酸外切酶缺陷型Klenow片段(exo-KF)表现出最有效的转移合成,导致全长产物约16%带有修饰模板,带有带有C10-S构型的加合物。相比之下,所有六个BPDE加成模板均最强烈地抑制了带有活性3'-> 5'核酸外切酶活性的噬菌体T4 DNA聚合酶的链延长。当与序列酶聚合时,在所有模板中都发生了与加合物相反的A的错误掺入,而exo-KF优先与C10-R BPDE加合物相对的C和与C10-S BPDE加合物相对的A的掺入。

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