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首页> 外文期刊>Journal of Cancer Research and Clinical Oncology >Evidence for reduced copying fidelity of DNA polymerases alpha, delta, and epsilon from Novikoff hepatoma cells.
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Evidence for reduced copying fidelity of DNA polymerases alpha, delta, and epsilon from Novikoff hepatoma cells.

机译:降低Novikoff肝癌细胞DNA聚合酶α,δ和ε复制保真度的证据。

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To investigate whether or not DNA polymerases alpha, delta, and epsilon from tumor cells have acquired properties that might be responsible for mutations found in tumor development, we investigated copying fidelities of DNA polymerases alpha, delta, and epsilon from the highly malignant Novikoff hepatoma cells and compared them to the corresponding enzymes from normal rat liver. DNA polymerases were purified more than 300-fold by three chromatographic steps. Copying fidelity was studied using steady-state kinetics and an 18-mer oligonucleotide primed with a 12-mer (13-mer for extension experiments) as DNA primer-template. Three experimental approaches were chosen: i) extension of DNA primers with mismatched 3'-OH ends opposite dGMP, ii) DNA insertion of nucleotides opposite m6G in the template and iii) extension of DNA primers with mismatched 3'-OH ends opposite m6G. i) Extension of DNA primers with mismatched 3'-OH ends opposite dGMP. DNA primer templates containing G:T and G:A mispairs at the 3'-OH position of the primer were easily extended by DNA polymerases alpha, delta and epsilon from both normal rat liver and Novikoff hepatoma cells. The G:G mismatch was elongated with low efficiency. Notably, DNA polymerase alpha from Novikoff hepatoma cells extended G:A and G:G mismatches significantly faster than the enzyme from normal cells. ii) Insertion of nucleotides opposite m6G. DNA polymerases alpha, delta, and epsilon from normal rat liver preferably catalyzed incorporation of dAMP opposite m6G at dNTP concentrations < 100 microM. When dNTP concentrations were raised to > or = 100 microM, dCMP (DNA polymerases delta and epsilon) and dTMP (DNA polymerase alpha) were also incorporated. The same insertion characteristics were found for the enzymes from Novikoff cells, however, insertion efficiencies of dAMP and dCMP were significantly higher for polymerases delta and epsilon. iii) Extension of primers with mismatched 3'-OH ends opposite m6G. Only m6G:dAMP and m6G:dCMP mismatches were extended by DNA polymerases alpha, delta and epsilon from both sources. No differences in extension efficiency were observed between the enzymes from normal and hepatoma cells. Taken together, our results suggest that DNA polymerases alpha, delta, and epsilon from Novikoff cells catalyzed incorporation of the wrong nucleotides more readily and extended mismatches more easily. These results may provide a rationale why numerous mutations accumulate during tumor development.
机译:为了调查肿瘤细胞中的DNA聚合酶α,δ和epsilon是否具有可能导致肿瘤发展突变的特性,我们调查了高度恶性的Novikoff肝癌细胞中DNA聚合酶α,δ和epsilon的复制保真度。并将它们与正常大鼠肝脏中相应的酶进行比较。通过三个色谱步骤将DNA聚合酶纯化超过300倍。使用稳态动力学和以12聚体(延伸实验为13聚体)引发的18聚体寡核苷酸作为DNA引物模板,研究了复制保真度。选择了三种实验方法:i)延伸具有与dGMP相反的3'-OH末端不匹配的DNA引物,ii)延伸与模板中m6G相对的核苷酸的DNA,以及iii)具有与m6G相对的3'-OH末端不匹配的DNA引物。 i)与dGMP相对的具有错配的3'-OH末端的DNA引物的延伸。在正常大鼠肝脏和Novikoff肝细胞瘤细胞中,DNA聚合酶α,δ和ε容易扩展在引物3'-OH位置上含有G:T和G:A错配的DNA引物模板。 G:G失配以低效率延长。值得注意的是,来自Novikoff肝癌细胞的DNA聚合酶α延伸G:A和G:G错配的速度明显快于来自正常细胞的酶。 ii)插入与m6G相对的核苷酸。来自正常大鼠肝脏的DNA聚合酶α,δ和ε优选在dNTP浓度<100 microM时催化与m6G相反的dAMP的掺入。当dNTP浓度升高至>或= 100 microM时,还将并入dCMP(DNA聚合酶δ和ε)和dTMP(DNA聚合酶α)。对于来自Novikoff细胞的酶发现了相同的插入特性,但是,对于聚合酶δ和ε,dAMP和dCMP的插入效率明显更高。 iii)与m6G相对的3'-OH末端错配的引物的延伸。两种来源的DNA聚合酶α,δ和ε均仅延长了m6G:dAMP和m6G:dCMP错配。在正常细胞和肝癌细胞中的酶之间没有观察到延伸效率的差异。两者合计,我们的结果表明,来自Novikoff细胞的DNA聚合酶α,δ和ε更容易催化错误核苷酸的掺入并更容易扩展错配。这些结果可能提供了为什么在肿瘤发展过程中会积累大量突变的理由。

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