首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >A silencing suppressor protein (NSs) of a tospovirus enhances baculovirus replication in permissive and semipermissive insect cell lines.
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A silencing suppressor protein (NSs) of a tospovirus enhances baculovirus replication in permissive and semipermissive insect cell lines.

机译:裂殖病毒的沉默抑制蛋白(NSs)增强杆状病毒在允许和半允许昆虫细胞系中的复制。

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The nonstructural protein (NSs) of the Tomato spotted wilt virus (TSWV) has been identified as an RNAi suppressor in plant cells. A recombinant Autographa californica multiple nucleopolyhedrovirus (AcMNPV) designated vAcNSs, containing the NSs gene under the control of the viral polyhedrin (polh) gene promoter, was constructed and the effects of NSs in permissive, semipermissive and nonpermissive insect cells to vAcNSs infection were evaluated. vAcNSs produced more budded virus when compared to wild type in semipermissive cells. Co-infection of vAcNSs with wild type baculoviruses clearly enhanced polyhedra production in all host cells. Confocal microscopy analysis showed that NSs accumulated in abundance in the cytoplasm of permissive and semipermissive cells. In contrast, high amounts of NSs were detected in the nuclei of nonpermissive cells. Co-infection of vAcNSs with a recombinant AcMNPV containing the enhanced green fluorescent protein (egfp) gene, significantly increased EGFP expression in semipermissive cells and in Anticarsia gemmatalis-hemocytes. Absence of small RNA molecules of egfp transcripts in this cell line and in a permissive cell line indicates the suppression of gene silencing activity. On the other hand, vAcNSs was not able to suppress RNAi in a nonpermissive cell line. Our data showed that NSs protein of TSWV facilitates baculovirus replication in different lepidopteran cell lines, and these results indicate that NSs could play a similar role during TSWV-infection in its thrips vector.
机译:番茄斑萎病毒(TSWV)的非结构蛋白(NSs)已被鉴定为植物细胞中的RNAi抑制剂。构造了一个重​​组的加利福尼亚州卷柏多核多角体病毒(AcMNPV),命名为vAcNSs,其包含在病毒多面体(polh)基因启动子控制下的NSs基因,并评估了NSs在允许,半允许和不允许昆虫细胞中对vAcNSs感染的影响。与半宽松细胞中的野生型相比,vAcNSs产生更多的发芽病毒。 vAcNSs与野生型杆状病毒的共感染明显增强了所有宿主细胞中多面体的产生。共聚焦显微镜分析表明,NSs在允许和半允许细胞的细胞质中大量积累。相反,在非许可细胞的细胞核中检测到大量的NS。 vAcNSs与包含增强的绿色荧光蛋白(egfp)基因的重组AcMNPV共同感染,在半宽容细胞和抗癌双生血细胞中显着增加了EGFP表达。在此细胞系和允许的细胞系中,缺少egfp转录物的小RNA分子表明抑制基因沉默活性。另一方面,vAcNSs不能抑制非许可细胞系中的RNAi。我们的数据表明,TSWV的NSs蛋白促进杆状病毒在不同鳞翅目细胞系中的复制,这些结果表明,NSs在其蓟马载体中的TSWV感染过程中可能起类似的作用。

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