Nomaguchi Masako, Ackermann Matt, Yon Changsuek, You Shihyun, Padmanabhan R
Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City, Kansas 66160, USA.
J Virol. 2003 Aug;77(16):8831-42. doi: 10.1128/jvi.77.16.8831-8842.2003.
By using a purified dengue virus RNA-dependent RNA polymerase and a subgenomic 770-nucleotide RNA template, it was shown previously that the ratio of the de novo synthesis product to hairpin product formed was inversely proportional to increments of assay temperatures (20 to 40 degrees C). In this study, the components of the de novo preinitiation complex are defined as ATP, a high concentration of GTP (500 micro M), the polymerase, and the template RNA. Even when the 3'-terminal sequence of template RNA was mutated from -GGUUCU-3' to -GGUUUU-3', a high GTP concentration was required for de novo initiation, suggesting that high GTP concentration plays a conformational role. Furthermore, utilization of synthetic primers by the polymerase indicated that AGAA is the optimal primer whereas AG, AGA, and AGAACC were inefficient primers. Moreover, mutational analysis of the highly conserved 3'-terminal dinucleotide CU of the template RNA indicated that change of the 3'-terminal nucleotide from U to C reduced the efficiency about fivefold. The order of preference for the 3'-terminal nucleotide, from highest to lowest, is U, A - G, and C. However, change of the penultimate nucleotide from C to U did not affect the template activity. A model consistent with these results is that the active site of the polymerase switches from a "closed" form, catalyzing de novo initiation through synthesis of short primers, to an "open" form for elongation of a double-stranded template-primer.
通过使用纯化的登革病毒RNA依赖性RNA聚合酶和一个770个核苷酸的亚基因组RNA模板,先前的研究表明,从头合成产物与发夹产物的比例与测定温度(20至40摄氏度)的升高成反比。在本研究中,从头起始前复合体的组成成分被定义为ATP、高浓度的GTP(500微摩尔)、聚合酶和模板RNA。即使模板RNA的3'末端序列从-GGUUCU-3'突变为-GGUUUU-3',从头起始仍需要高浓度的GTP,这表明高浓度GTP发挥了构象作用。此外,聚合酶对合成引物的利用表明,AGAA是最佳引物,而AG、AGA和AGAACC是低效引物。此外,对模板RNA高度保守的3'末端二核苷酸CU的突变分析表明,3'末端核苷酸从U变为C会使效率降低约五倍。3'末端核苷酸的偏好顺序从高到低依次为U、A、G和C。然而,倒数第二个核苷酸从C变为U并不影响模板活性。与这些结果一致的模型是,聚合酶的活性位点从“封闭”形式转变为“开放”形式,“封闭”形式通过合成短引物催化从头起始,“开放”形式用于双链模板引物的延伸。