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Construction and Mutagenesis of an Artificial Bicistronic Tick-Borne Encephalitis Virus Genome Reveals an Essential Function of the Second Transmembrane Region of Protein E in Flavivirus Assembly▿

机译:人工双顺反子Tick-Borne脑炎病毒基因组的构建和诱变揭示了黄病毒组装中蛋白E的第二个跨膜区的基本功能▿

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摘要

Flaviviruses have a monopartite positive-stranded RNA genome, which serves as the sole mRNA for protein translation. Cap-dependent translation produces a polyprotein precursor that is co- and posttranslationally processed by proteases to yield the final protein products. In this study, using tick-borne encephalitis virus (TBEV), we constructed an artificial bicistronic flavivirus genome (TBEV-bc) in which the capsid protein and the nonstructural proteins were still encoded in the cap cistron but the coding region for the surface proteins prM and E was moved to a separate translation unit under the control of an internal ribosome entry site element inserted into the 3′ noncoding region. Mutant TBEV-bc was shown to produce particles that packaged the bicistronic RNA genome and were infectious for BHK-21 cells and mice. Compared to wild-type controls, however, TBEV-bc was less efficient in both RNA replication and infectious particle formation. We took advantage of the separate expression of the E protein in this system to investigate the role in viral assembly of the second transmembrane region of protein E (E-TM2), a second copy of which was retained in the cap cistron to fulfill its other role as an internal signal sequence in the polyprotein. Deletion analysis and replacement of the entire TBEV E-TM2 region with its counterpart from another flavivirus revealed that this element, apart from its role as a signal sequence, is important for virion formation.
机译:黄病毒具有单部分正链RNA基因组,可作为蛋白质翻译的唯一mRNA。帽依赖性翻译产生多蛋白前体,该多蛋白前体被蛋白酶共翻译和后翻译以产生最终的蛋白质产物。在这项研究中,我们使用壁虱传播性脑炎病毒(TBEV),构建了人工双顺反子黄病毒基因组(TBEV-bc),其中衣壳蛋白和非结构蛋白仍在顺反子帽中编码,但表面蛋白的编码区在插入3'非编码区的内部核糖体进入位点元件的控制下,将prM和E移至单独的翻译单元。结果表明,突变的TBEV-bc产生的颗粒包装了双顺反子RNA基因组,并感染了BHK-21细胞和小鼠。然而,与野生型对照相比,TBEV-bc在RNA复制和感染性颗粒形成方面效率较低。我们利用了该系统中E蛋白的单独表达,研究了E蛋白第二个跨膜区(E-TM2)在病毒装配中的作用,该蛋白的第二个副本保留在顺反子帽中,以完成其另一个在多蛋白中充当内部信号序列。缺失分析和用另一种黄病毒的对应物替换整个TBEV E-TM2区,发现该元件除了作为信号序列发挥作用外,对于病毒体的形成也很重要。

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