Singer B, Kuśmierek J T, Fraenkel-Conrat H
Proc Natl Acad Sci U S A. 1983 Feb;80(4):969-72. doi: 10.1073/pnas.80.4.969.
Three different poly(dC)s with modifications that block the N-3 of deoxycytidine were used as templates for polymer synthesis by Escherichia coli DNA polymerase I (EC 2.7.7.7). In contrast to previously reported results with transcriptases, the hydrated form of 3,N(4)-ethenodeoxycytidine (epsilondC.H(2)O) did not mispair. Both 3,N(4)-ethenodeoxycytidine (epsilondC) and 3-methyldeoxycytidine (m(3)dC) led to dTMP misincorporation: 1/20 epsilondC and 1/80 m(3)dC. No other misincorporations appeared to be significant in amount. Thus, both qualitatively and quantitatively, replication errors resulting from carcinogen-modified bases are less frequent than errors in transcription of the same deoxypolynucleotides. Replication of comparable ribopolynucleotide templates by cucumber RNA-dependent RNA polymerase (EC 2.7.7.48) was strongly inhibited by epsilonrC.H(2)O and epsilonrC, so that the fidelity of this enzyme could not be assessed. However, both poly(dC) and poly(rC) containing dU or rU led to incorporation of rA. The presence of even small amounts of purines in poly(rC) greatly depressed synthesis, but the complementary base was incorporated. The finding that an RNA replicase can utilize a deoxypolynucleotide template is a further indication that, at least in vitro, the specificity of the relationship of enzymes and their natural templates is not absolute.
三种不同的对脱氧胞苷N-3位进行修饰从而阻断其活性的聚(dC)被用作大肠杆菌DNA聚合酶I(EC 2.7.7.7)进行聚合物合成的模板。与先前关于转录酶的报道结果相反,3,N(4)-乙烯基脱氧胞苷的水合形式(εdC·H₂O)并未发生错配。3,N(4)-乙烯基脱氧胞苷(εdC)和3-甲基脱氧胞苷(m³dC)均导致dTMP错误掺入:分别为1/20的εdC和1/80的m³dC。似乎没有其他显著量的错误掺入。因此,无论是在定性还是定量方面,致癌物修饰碱基导致的复制错误都比相同脱氧多核苷酸转录中的错误频率更低。黄瓜RNA依赖性RNA聚合酶(EC 2.7.7.48)对可比的核糖多核苷酸模板的复制受到εrC·H₂O和εrC的强烈抑制,因此无法评估该酶的保真度。然而,含有dU或rU的聚(dC)和聚(rC)均导致rA的掺入。聚(rC)中即使存在少量嘌呤也会极大地抑制合成,但互补碱基仍会掺入。RNA复制酶能够利用脱氧多核苷酸模板这一发现进一步表明,至少在体外,酶与其天然模板关系的特异性并非绝对。