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O6-甲基鸟嘌呤和O6-乙基鸟嘌呤的竞争性错编码以及细胞脱氧核苷5'-三磷酸池大小在诱变和致癌作用中可能的重要性。

The competitive miscoding of O6-methylguanine and O6-ethylguanine and the possible importance of cellular deoxynucleoside 5'-triphosphate pool sizes in mutagenesis and carcinogenesis.

作者信息

Saffhill R

出版信息

Biochim Biophys Acta. 1986 Feb 24;866(1):53-60. doi: 10.1016/0167-4781(86)90100-4.

Abstract

Using initiated poly(dG,O6-RdG) and poly(dA,O6-RdG) polynucleotides as templates for DNA polymerase I in vitro the promutagenic potential of O6-MeG and O6-EtG has been confirmed, together with the possibility of minor miscoding pathways for O6-RG. These lead to the incorporation of dAMP and dGMP, which could give rise to some of the limited number of transversions that have been observed arising from the action of alkylating agents. The results are compatible with the current knowledge of oncogenes, explaining the changes in base sequence that have been observed. The competition for the miscoding of O6-RG which leads to the incorporation of dCMP in addition to the expected dTMP is also shown. The relative amounts of these two nucleotides incorporated depend upon the concentrations of the dCTP and dTTP in the assay. The mutagenic efficiency of O6-MeG is constant at approx. 0.4 over a wide range of dTTP and dCTP concentrations and only increases when the dCTP in the assay ceases to saturate the polymerizing enzyme, indicating that the DNA polymerase I plays a role in determining the mutagenic efficiency of a modified base. Although the mutagenic efficiency of both O6-MeG and O6-EtG depends upon the relative concentrations. of dTTP and dCTP in the assay, a reduction in the concentration of dCTP can be more effective at increasing the mutagenic efficiency than a corresponding increase in the concentration of dTTP. These results indicate the importance of cellular dNTP pools in determining the cellular response to agents.

摘要

使用起始的聚(dG,O6 - RdG)和聚(dA,O6 - RdG)多核苷酸作为体外DNA聚合酶I的模板,O6 - MeG和O6 - EtG的促诱变潜力已得到证实,同时也证实了O6 - RG存在少量错配编码途径的可能性。这些导致dAMP和dGMP的掺入,这可能会引发一些已观察到的由烷基化剂作用引起的有限数量的颠换。结果与当前对癌基因的认识相符,解释了已观察到的碱基序列变化。还展示了O6 - RG错配编码的竞争情况,除了预期的dTMP外,还会导致dCMP的掺入。这两种核苷酸掺入的相对量取决于测定中dCTP和dTTP的浓度。O6 - MeG的诱变效率在很宽的dTTP和dCTP浓度范围内约为0.4且保持恒定,只有当测定中的dCTP不再使聚合酶饱和时才会增加,这表明DNA聚合酶I在确定修饰碱基的诱变效率中起作用。虽然O6 - MeG和O6 - EtG的诱变效率都取决于测定中dTTP和dCTP的相对浓度,但降低dCTP浓度在提高诱变效率方面可能比相应提高dTTP浓度更有效。这些结果表明细胞dNTP库在确定细胞对试剂的反应中的重要性。

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