首页> 美国卫生研究院文献>Journal of Virology >In Vitro Replication of Cowpea Mosaic Virus RNA III. Template Recognition by Cowpea Mosaic Virus RNA Replicase
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In Vitro Replication of Cowpea Mosaic Virus RNA III. Template Recognition by Cowpea Mosaic Virus RNA Replicase

机译:Cow豆花叶病毒RNA III的体外复制。 Cow豆花叶病毒RNA复制酶识别模板

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摘要

Cowpea mosaic virus (CPMV) RNA replicase has been purified about 200-fold from CPMV-infected Vigna unguiculata leaves. Optimal reaction conditions for replicase activity have been established that allow RNA synthesis to proceed for at least 15 h. Using a polymerase assay under conditions optimal for CPMV RNA-directed RNA synthesis, all natural RNA species tested appeared to be able to direct the incorporation of labeled ribonucleotides, whereas synthetic homoribopolymers were either inactive or only slightly active. Using a nitrocellulose membrane filter assay to measure complex formation between the replicase preparation and various RNA species, all natural RNA species tested, except that of the comovirus radish mosaic virus, appeared to be unable to compete with 32P-labeled CPMV RNA in binding to replicase. We propose that CPMV replicase is actually template specific but does not display this property in a polymerase assay, since labile complexes between heterologous templates and replicase become stabilized by the formation of phosphodiester bonds. From homoribopolymer competition binding experiments we conclude that the polyadenylic acid on the CPMV genome might be a part of the replicase binding site.
机译:CP豆花叶病毒(CPMV)RNA复制酶已从受CPMV感染的gna豆(Vigna unguiculata)叶片中纯化了约200倍。已经确定了复制酶活性的最佳反应条件,该条件可使RNA合成进行至少15小时。在最适合CPMV RNA指导的RNA合成的条件下使用聚合酶测定法,测试的所有天然RNA种类似乎都能指导标记的核糖核苷酸的掺入,而合成的同型核聚合物则无活性或仅具有轻微活性。使用硝酸纤维素膜滤膜测定来测量复制酶制剂和各种RNA物种之间的复杂形成,所有测试的天然RNA物种(除了小肠病毒萝卜花叶病毒除外)似乎都无法与 32 P竞争标记的CPMV RNA与复制酶结合。我们建议CPMV复制酶实际上是模板特异性的,但在聚合酶测定中不显示此特性,因为异源模板和复制酶之间的不稳定复合物通过磷酸二酯键的形成而变得稳定。从同核聚合物竞争结合实验中,我们得出结论,CPMV基因组上的聚腺苷酸可能是复制酶结合位点的一部分。

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