Novak U, Friedrich R, Moelling K
J Virol. 1979 May;30(2):438-52. doi: 10.1128/JVI.30.2.438-452.1979.
RNA-dependent DNA synthesis in a virion-associated reaction has been described as being dependent upon the detergent concentration used for disruption of the virion. In this study, the Triton X-100 concentration was found to affect the elongation of the initially synthesized DNA complementary to the last approximately 100 nucleotides at the 5' end of the RNA (cDNA100). Whereas elongation of cDNA100 increased with time of incubation at the optimal detergent concentration, this process was retarded at higher detergent concentrations. At the optimal detergent concentration, elongated DNA was of low chemical complexity, indicating that extension of cDNA100 occurred at a unique site on the RNA. Higher than optimal detergent concentrations resulted in nonspecific elongation and in DNA of high chemical complexity. This was shown by oligopyrimidine tract analysis. Furthermore, actinomycin D was observed to inhibit the elongation of cDNA100 at the optimal detergent concentration. The nature of the elongation process was elucidated by analysis of DNA synthesized in a virion-associated reaction in the presence of bacteriophage Qbeta RNA. At the optimal detergent concentration DNA complementary only to avian sarcoma virus RNA was synthesized, whereas at higher concentrations DNA was copied from both avian sarcoma virus and Qbeta RNA. We conclude that the elongation mechanism of cDNA100 is affected by the detergent concentration and elongation is unspecific at higher than optimal detergent concentrations. The mechanism by which the nonionic detergent stimulates DNA synthesis has not yet been resolve. We assume that other factors in addition to DNA polymerase are involved in elongation of cDNA100.
病毒体相关反应中依赖RNA的DNA合成已被描述为取决于用于破坏病毒体的去污剂浓度。在本研究中,发现Triton X-100浓度会影响最初合成的与RNA 5'端最后约100个核苷酸互补的DNA(cDNA100)的延伸。在最佳去污剂浓度下,cDNA100的延伸随孵育时间增加,而在更高的去污剂浓度下该过程受到抑制。在最佳去污剂浓度下,延伸的DNA化学复杂性较低,表明cDNA100的延伸发生在RNA上的一个独特位点。高于最佳去污剂浓度会导致非特异性延伸以及化学复杂性高的DNA。这通过寡嘧啶序列分析得以证明。此外,观察到放线菌素D在最佳去污剂浓度下抑制cDNA100的延伸。通过分析在噬菌体Qβ RNA存在下病毒体相关反应中合成的DNA,阐明了延伸过程的性质。在最佳去污剂浓度下,仅合成与禽肉瘤病毒RNA互补的DNA,而在更高浓度下,DNA则从禽肉瘤病毒和Qβ RNA两者复制。我们得出结论,cDNA100的延伸机制受去污剂浓度影响,且在高于最佳去污剂浓度时延伸是非特异性的。非离子去污剂刺激DNA合成的机制尚未得到解决。我们假设除DNA聚合酶外的其他因素参与了cDNA100的延伸。