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Minimum molecular architectures for transcription and replication of the influenza virus

机译:流感病毒转录和复制的最低分子架构

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The RNA-dependent RNA polymerase of influenza virus is composed of three viral P proteins (PB1, PB2, and PA) and involved in both transcription and replication of the RNA genome. The PB1 subunit plays a key role in both the assembly of three P protein subunits and the catalytic function of RNA polymerization. We have established a simultaneous expression system of three P proteins in various combinations using recombinant baculoviruses, and isolated the PA-PB1-PB2 ternary (3P) complex and two kinds of the binary (2P) complex, PA-PB1 and PB1-PB2. The affinity-purified 3P complex showed all of the catalytic properties characteristic of the transcriptase, including capped RNA-binding, capped RNA cleavage, model viral RNA binding, model viral RNA-directed RNA synthesis, and polyadenylation of newly synthesized RNA. The PB1-PB2 binary complex showed essentially the same catalytic properties as does the 3P complex, whereas the PA-PB1 complex catalyzed de novo initiation of RNA synthesis in the absence of primers. Taken together we propose that the catalytic specificity of PB1 subunit is modulated to the transcriptase by binding PB2 or the replicase by interaction with PA.
机译:流感病毒的RNA依赖性RNA聚合酶由三种病毒P蛋白(PB1,PB2和PA)组成,并参与RNA基因组的转录和复制。 PB1亚基在三个P蛋白亚基的组装和RNA聚合的催化功能中均起关键作用。我们使用重组杆状病毒建立了三种P蛋白同时表达的同时表达系统,并分离了PA-PB1-PB2三元(3P)复合物和两种二元(2P)复合物PA-PB1和PB1-PB2。亲和纯化的3P复合物显示了转录酶的所有催化特性,包括加帽RNA结合,加帽RNA裂解,病毒RNA结合模型,病毒RNA指导的RNA合成模型以及新合成的RNA的聚腺苷酸化。 PB1-PB2二元复合物显示出与3P复合物基本相同的催化特性,而PA-PB1复合物在不存在引物的情况下从头催化了RNA合成。两者合计,我们建议PB1亚基的催化特异性是通过结合PB2或通过与PA相互作用复制酶来调节转录酶的。

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