Loeb L A, Sirover M A, Weymouth L A, Dube D K, Seal G, Agarwal S S, Katz E
J Toxicol Environ Health. 1977 Jul;2(6):1297-304. doi: 10.1080/15287397709529531.
An assay system has been developed for measuring the fidelity of DNA synthesis in vitro by using synthetic polynucleotide templates and purified DNA polymerases. Nearest-neighbor analysis of the synthesized product indicates that noncomplementary nucleotides are incorporated as single base substitutions. The accuracy of DNA synthesis can be decreased by (1) prior alkylation of the template, (2) increasing the relative concentration of incorrect nucleotides, and (3) addition of specific metal salts to the reaction mixture. As an initial evaluation of the utility of this system, the effects of 31 metal salts on the fidelity of DNA synthesis have been determined. The results indicate that potential metal mutagens and/or carcinogens may be detected by measuring alterations in the fidelity of DNA synthesis.
已经开发出一种测定系统,用于通过使用合成多核苷酸模板和纯化的DNA聚合酶在体外测量DNA合成的保真度。对合成产物的邻位分析表明,非互补核苷酸以单碱基取代的形式掺入。DNA合成的准确性可通过以下方式降低:(1)模板预先烷基化;(2)增加错误核苷酸的相对浓度;(3)向反应混合物中添加特定金属盐。作为对该系统实用性的初步评估,已确定了31种金属盐对DNA合成保真度的影响。结果表明,通过测量DNA合成保真度的变化可以检测潜在的金属诱变剂和/或致癌物。