首页> 美国卫生研究院文献>Journal of Virology >Complementation Analysis of the Flavivirus Kunjin NS3 and NS5 Proteins Defines the Minimal Regions Essential for Formation of a Replication Complex and Shows a Requirement of NS3 in cis for Virus Assembly
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Complementation Analysis of the Flavivirus Kunjin NS3 and NS5 Proteins Defines the Minimal Regions Essential for Formation of a Replication Complex and Shows a Requirement of NS3 in cis for Virus Assembly

机译:黄病毒Kunjin NS3和NS5蛋白的互补分析确定了形成复制复合物必不可少的最小区域并显示了NS3顺式病毒组装的要求。

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摘要

We have previously reported successful trans-complementation of defective Kunjin virus genomic RNAs with a range of large lethal deletions in the nonstructural genes NS1, NS3, and NS5 (A. A. Khromykh et al., J. Virol. >74:3253-3263, 2000). In this study we have mapped further the minimal region in the NS5 gene essential for efficient trans-complementation of genome-length RNAs in repBHK cells to the first 316 of the 905 codons. To allow amplification and easy detection of complemented defective RNAs with deletions apparently affecting virus assembly, we have developed a dual replicon complementation system. In this system defective replicon RNAs with a deletion(s) in the nonstructural genes also encoded the puromycin resistance gene (PAC gene) and the reporter gene for β-galactosidase (β-Gal). Complementation of these defective replicon RNAs in repBHK cells resulted in expression of PAC and β-Gal which allowed establishment of cell lines stably producing replicating defective RNAs by selection with puromycin and comparison of replication efficiencies of complemented defective RNAs by β-Gal assay. Using this system we demonstrated that deletions in the C-terminal 434 codons of NS3 (codons 178 to 611) were complemented for RNA replication, while any deletions in the first 178 codons were not. None of the genome-length RNAs containing deletions in NS3 shown to be complementable for RNA replication produced secreted defective viruses during complementation in repBHK cells. In contrast, structural proteins produced from these complemented defective RNAs were able to package helper replicon RNA. The results define minimal regions in the NS3 and NS5 genes essential for the formation of complementable replication complex and show a requirement of NS3 in cis for virus assembly.
机译:先前我们已经报道了有缺陷的Kunjin病毒基因组RNA的成功反式互补,在非结构性基因NS1,NS3和NS5中具有大量的致死性缺失(AA Khromykh等人,J。Virol。> 74: 3253-3263,2000)。在这项研究中,我们进一步绘制了NS5基因中最小的区域,该区域对于repBHK细胞中的基因组长度RNA高效反式互补至905个密码子的前316个至关重要。为了扩增和容易检测到明显影响病毒装配的缺失的互补缺陷RNA,我们开发了双重复制子互补系统。在该系统中,在非结构基因中具有缺失的缺陷复制子RNA也编码了嘌呤霉素抗性基因(PAC基因)和β-半乳糖苷酶(β-Gal)的报道基因。 repBHK细胞中这些缺陷复制子RNA的互补导致PAC和β-Gal的表达,从而可以通过嘌呤霉素的选择建立稳定产生复制缺陷RNA的细胞系,并通过β-Gal分析比较互补缺陷RNA的复制效率。使用该系统,我们证明了NS3的C末端434个密码子的缺失(178至611号密码子)可用于RNA复制,而前178个密码子的任何缺失均不可以。在repBHK细胞互补过程中,没有显示出可与RNA复制互补的,包含NS3缺失的基因组长度的RNA均不会产生分泌性缺陷病毒。相反,由这些互补缺陷RNA产生的结构蛋白能够包装辅助复制子RNA。结果确定了在NS3和NS5基因中形成互补复制复合物必不可少的最小区域,并显示了NS3在顺式中对病毒装配的需求。

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