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Stable expression of noncytopathic Kunjin replicons simulates bothultrastructural and biochemical characteristics observed duringreplication of Kunjin virus

机译:非细胞病性昆金复制子的稳定表达模拟了昆金病毒复制过程中观察到的超微结构和生化特征

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This report focuses mainly on the characterization of a Vero cell line stably expressing the flavivirus Kunjin (KUN) replicon C20SDrep (C20SDrepVero). We showed by immunofluorescence and cryoimmunoelectron microscopy that unique flavivirus-induced membrane structures, termed convoluted membranes/paracrystalline structures, were induced in the C20SDrepVero cells. These induced cytoplasmic foci were immunolabeled with KUN virus anti-NS3 antibodies and with antibodies to the cellular markers ERGIC53 (for the intermediate compartment) and protein disulfide isomerase (for the rough endoplasmic reticulum). However, in contrast to the large perinuclear inclusions observed by immunofluorescence with anti-double-stranded (ds)RNA antibodies in KUN virus-infected cells, the dsRNA in C20SDrepVero cells was localized to small isolated foci scattered throughout the cytoplasm, which were coincident with small foci dual-labeled with the trans-Golgi specific marker GaIT. importantly persistent expression of the KUN replicons in cells did not produce cytopathic effects, and the morphology of major host organelles (including Golgi, mitochondria, endoplasmic reticulum, and nucleus) was apparently unaffected. The amounts of plus- and minus-sense RNA synthesis in replicon cells were similar to those in KUN virus-infected cells until near the end of the latent period, but subsequently increases of about 10- and fourfold, respectively, occurred in infected cells. Virus-specified protein synthesis in C20SDrepVero cells was also about 10-fold greater than that in infected cells. When several KUN replicon cell lines were compared with respect to membrane induction, the relative efficiencies increased in parallel with increases in viral RNA and protein synthesis, consistent with the increases observed during the virus infectious cycle. Based on these observations, cell lines expressing less-efficient replicons may provide a useful tool to study early events in flavivirus RNA replication, which are difficult to assess in Virus infections.
机译:该报告主要侧重于稳定表达黄病毒昆金(KUN)复制子C20SDrep(C20SDrepVero)的Vero细胞系的表征。通过免疫荧光和冷冻免疫电子显微镜,我们证明了在C20SDrepVero细胞中诱导了独特的黄病毒诱导的膜结构,称为盘旋膜/副晶体结构。这些诱导的细胞质灶用KUN病毒抗NS3抗体和细胞标记物ERGIC53(用于中间区室)和蛋白二硫键异构酶(用于粗面内质网)进行免疫标记。但是,与在KUN病毒感染的细胞中用抗双链(ds)RNA抗体通过免疫荧光观察到的大核周包涵体相反,C20SDrepVero细胞中的dsRNA定位于散布在整个细胞质中的小的分离病灶,这与小灶用反式高尔基体特异性标记GaIT双重标记。重要的是,KUN复制子在细胞中的持续表达不会产生细胞病变作用,并且主要宿主细胞器(包括高尔基体,线粒体,内质网和细胞核)的形态显然不受影响。在潜伏期即将结束之前,复制子细胞中正负RNA合成的量与感染KUN病毒的细胞相似,但随后在被感染细胞中分别增加了约10倍和4倍。 C20SDrepVero细胞中病毒指定的蛋白质合成也比受感染细胞中的蛋白质合成高约10倍。当比较几种KUN复制子细胞系的膜诱导作用时,相对效率与病毒RNA和蛋白质合成的增加同时增加,这与在病毒感染周期中观察到的增加一致。基于这些观察,表达低效复制子的细胞系可能提供有用的工具来研究黄病毒RNA复制中的早期事件,这在病毒感染中难以评估。

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