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首页> 外文期刊>Virology >Protein-protein interactions among West Nile non-structural proteins and transmembrane complex formation in mammalian cells
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Protein-protein interactions among West Nile non-structural proteins and transmembrane complex formation in mammalian cells

机译:西尼罗河非结构蛋白之间的蛋白相互作用和哺乳动物细胞中跨膜复合物的形成

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摘要

To study the membrane orientation of flavivirus non-structural proteins (NSPs) in the replication complex, the seven major West Nile (WN) NSPs were separately expressed in monkey cells, and their subcellular localization was investigated by imaging-based techniques. First, we observed by confocal microscopy that four small transmembrane proteins (TP) (NS2A, NS2B, NS4A, and NS4B) were located to the endoplasmic reticulum (ER), whereas the largest NSPs, NS1, NS3, and NS5 were not. We then analyzed the colocalization and the association of WN NSPs using the methods of confocal microscopy, fluorescence resonance energy transfer (FRET), and biologic fluorescence complementation (BiFC). Through these combined imaging techniques, protein-protein interactions (PPI) among WNNSPs were detected. Our data demonstrate that there are interactions between NS2A and NS4A, and interactions of NS2B with three other TPs (NS2A, NS4A, and NS4B) as well as the expected interaction with NS3. PPI between NS2A and NS4B or between NS4A and NS4B were not detected. By the criteria of these techniques, NS5 interacted only with NS3, and NS1 was not shown to be in close proximity with other NSPs. In addition, homo-oligomerization of some NSPs was observed and three-way interactions between NS2A, NS4A, and NA4B with NS2B-NS3 were also observed, respectively. Our results suggest that the four TPs are required for formation of transmembrane complex. NS2B protein seems to play a key role in bringing the TPs together on the ER membrane and in bridging the TPs with non-membrane-associated proteins (NS3 and NS5).
机译:若要研究黄病毒非结构蛋白(NSPs)在复制复合物中的膜取向,七种主要的西尼罗河(WN)NSPs在猴细胞中分别表达,并通过基于成像的技术研究其亚细胞定位。首先,我们通过共聚焦显微镜观察到,四个小跨膜蛋白(TP)(NS2A,NS2B,NS4A和NS4B)位于内质网(ER),而最大的NSP,NS1,NS3和NS5没有。然后,我们使用共聚焦显微镜,荧光共振能量转移(FRET)和生物荧光互补(BiFC)的方法分析了WN NSP的共定位和关联。通过这些组合的成像技术,可以检测到WNNSP之间的蛋白质-蛋白质相互作用(PPI)。我们的数据表明,NS2A和NS4A之间存在相互作用,以及NS2B与其他三个TP(NS2A,NS4A和NS4B)之间的相互作用以及与NS3的预期相互作用。未检测到NS2A与NS4B之间或NS4A与NS4B之间的PPI。根据这些技术的标准,NS5仅与NS3交互,并且未显示NS1与其他NSP紧密相邻。另外,观察到一些NSP的均聚,并且还观察到NS2A,NS4A和NA4B与NS2B-NS3之间的三向相互作用。我们的结果表明跨膜复合物的形成需要四个TP。 NS2B蛋白似乎在将TP结合到ER膜上以及将TP与非膜相关蛋白(NS3和NS5)桥接方面起着关键作用。

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