Battula N, Loeb L A
J Biol Chem. 1975 Jun 25;250(12):4405-9.
Polynucleotide templates were copied by avian myeloblastosis virus DNA polymerase ("reverse transcriptase") and the frequency and distribution of errors were determined. The error rate with [r(pA)2500-d(pT)12-18] template-initiator under a variety of conditions was approximately 1/600, i.e. one incorrect dCMP incorporated for 600 correct dTMP polymerized. Addition of the metal chelator o-phenanthroline to the reaction inhibited the incorporation of correct and incorrect nucleotides proportionately. The enzyme inhibited a pH optimum of 8.5 and the error rate remained constant over a range of pH (6.0 to 10.0). The rate of polymerization was greater at higher temperatures and approximately doubled for every 10 degrees increase. The error rate was constant at all temperatures. These results indicate that the purified avian myeloblastosis virus DNA polymerase synthesizes polydeoxynucleotides with an unusually large number of errors in base-pairing. Velocity sedimentation of the products of the reaction obtained at various times during the course of synthesis indicate that: (a) the entire length of the 14 S template was copied, and (b) the incorporation of the incorrect nucleotide did not terminate chain propagation. Isopyknic banding in neutral and alkaline cesium sulfate gradients showed that the noncomplementary nucleotides are incorporated into the polydeoxynucleotide product. Stepwise degradation and nearest neighbor analysis of the reaction product indicated that (a) the correct and incorrect nucleotides are present in phosphodiester linkages, (b) the errors are not concentrated at either termini; and (c) the errors are uniformly distributed throughout the newly synthesized polydeoxynucleotide.
用禽成髓细胞瘤病毒DNA聚合酶(“逆转录酶”)复制多核苷酸模板,并测定错误的频率和分布。在各种条件下,以[r(pA)2500 - d(pT)12 - 18]模板引发剂的错误率约为1/600,即每聚合600个正确的dTMP会掺入1个错误的dCMP。向反应中添加金属螯合剂邻菲罗啉会按比例抑制正确和错误核苷酸的掺入。该酶的最适pH为8.5,在pH范围(6.0至10.0)内错误率保持恒定。较高温度下聚合速率更快,每升高10度大约翻倍。错误率在所有温度下都恒定。这些结果表明,纯化的禽成髓细胞瘤病毒DNA聚合酶合成的多脱氧核苷酸在碱基配对中存在异常大量的错误。在合成过程中不同时间获得的反应产物的速度沉降表明:(a) 14 S模板的全长被复制,并且(b) 错误核苷酸的掺入并未终止链的延伸。在中性和碱性硫酸铯梯度中的等密度沉降表明非互补核苷酸被掺入多脱氧核苷酸产物中。对反应产物进行逐步降解和最近邻分析表明:(a) 正确和错误的核苷酸存在于磷酸二酯键中,(b) 错误并不集中在任何一端;并且(c) 错误均匀分布在新合成的多脱氧核苷酸中。