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追踪荧光标记的狂犬病病毒:增强型绿色荧光蛋白标记的磷蛋白P支持病毒基因表达和感染性颗粒的形成。

Tracking fluorescence-labeled rabies virus: enhanced green fluorescent protein-tagged phosphoprotein P supports virus gene expression and formation of infectious particles.

作者信息

Finke Stefan, Brzózka Krzysztof, Conzelmann Karl-Klaus

机构信息

Max-von-Pettenkofer Institute & Gene Center, Feodor-Lynen-Strasse 25, D-81377 Münich, Germany.

出版信息

J Virol. 2004 Nov;78(22):12333-43. doi: 10.1128/JVI.78.22.12333-12343.2004.

Abstract

Rhabdoviruses such as rabies virus (RV) encode only five multifunctional proteins accomplishing viral gene expression and virus formation. The viral phosphoprotein, P, is a structural component of the viral ribonucleoprotein (RNP) complex and an essential cofactor for the viral RNA-dependent RNA polymerase. We show here that RV P fused to enhanced green fluorescent protein (eGFP) can substitute for P throughout the viral life cycle, allowing fluorescence labeling and tracking of RV RNPs under live cell conditions. To first assess the functions of P fusion constructs, a recombinant RV lacking the P gene, SAD DeltaP, was complemented in cell lines constitutively expressing eGFP-P or P-eGFP fusion proteins. P-eGFP supported the rapid accumulation of viral mRNAs but led to low infectious-virus titers, suggesting impairment of virus formation. In contrast, complementation with eGFP-P resulted in slower accumulation of mRNAs but similar infectious titers, suggesting interference with polymerase activity rather than with virus formation. Fluorescence microscopy allowed the detection of eGFP-P-labeled extracellular virus particles and tracking of cell binding and temperature-dependent internalization into intracellular vesicles. Recombinant RVs expressing eGFP-P or an eGFP-P mutant lacking the binding site for dynein light chain 1 (DLC1) instead of P were used to track interaction with cellular proteins. In cells expressing a DsRed-labeled DLC1, colocalization of DLC1 with eGFP-P but not with the mutant P was observed. Fluorescent labeling of RV RNPs will allow further dissection of virus entry, replication, and egress under live-cell conditions as well as cell interactions.

摘要

诸如狂犬病病毒(RV)之类的弹状病毒仅编码五种多功能蛋白,这些蛋白负责病毒基因表达和病毒形成。病毒磷蛋白P是病毒核糖核蛋白(RNP)复合体的结构成分,也是病毒RNA依赖性RNA聚合酶的必需辅助因子。我们在此表明,与增强型绿色荧光蛋白(eGFP)融合的RV P在整个病毒生命周期中都可以替代P,从而在活细胞条件下对RV RNPs进行荧光标记和追踪。为了首先评估P融合构建体的功能,在组成性表达eGFP-P或P-eGFP融合蛋白的细胞系中对缺失P基因的重组RV SAD DeltaP进行了互补。P-eGFP支持病毒mRNA的快速积累,但导致低感染性病毒滴度,这表明病毒形成受到损害。相比之下,用eGFP-P互补导致mRNA积累较慢,但感染滴度相似,这表明对聚合酶活性有干扰,而不是对病毒形成有干扰。荧光显微镜可以检测到eGFP-P标记的细胞外病毒颗粒,并追踪细胞结合以及温度依赖性内化到细胞内囊泡的过程。表达eGFP-P或缺乏动力蛋白轻链1(DLC1)结合位点的eGFP-P突变体而非P的重组RV被用于追踪与细胞蛋白的相互作用。在表达DsRed标记的DLC1的细胞中,观察到DLC1与eGFP-P共定位,但与突变体P没有共定位。RV RNPs的荧光标记将有助于在活细胞条件下进一步剖析病毒的进入、复制和释放以及细胞间相互作用。

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