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仙台病毒核衣壳的运输是由细胞内囊泡介导的。

Trafficking of Sendai virus nucleocapsids is mediated by intracellular vesicles.

机构信息

Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, New York, USA.

出版信息

PLoS One. 2010 Jun 7;5(6):e10994. doi: 10.1371/journal.pone.0010994.

Abstract

BACKGROUND

Paramyxoviruses are assembled at the plasma membrane budding sites after synthesis of all the structural components in the cytoplasm. Although viral ribonuclocapsid (vRNP) is an essential component of infectious virions, the process of vRNP translocation to assembly sites is poorly understood.

METHODOLOGY/PRINCIPAL FINDINGS: To analyze real-time trafficking of vRNPs in live infected cells, we created a recombinant Sendai virus (SeV), rSeVLeGFP, which expresses L protein fused to enhanced green fluorescent protein (eGFP). The rSeVLeGFP showed similar growth kinetics compared to wt SeV, and newly synthesized LeGFP could be detected as early as 8 h postinfection. The majority of LeGFP co-localized with other components of vRNPs, NP and P proteins, suggesting the fluorescent signals of LeGFP represent the locations of vRNPs. Analysis of LeGFP movement using time-lapse digital video microscopy revealed directional and saltatory movement of LeGFP along microtubules. Treatment of the cells with nocodazole restricted vRNP movement and reduced progeny virion production without affecting viral protein synthesis, suggesting the role of microtubules in vRNP trafficking and virus assembly. Further study with an electron microscope showed close association of vRNPs with intracellular vesicles present in infected cells. In addition, the vRNPs co-localized with Rab11a protein, which is known to regulate the recycling endocytosis pathway and Golgi-to-plasma membrane trafficking. Simultaneous movement between LeGFP and Rab11a was also observed in infected cells, which constitutively express mRFP-tagged Rab11a. Involvement of recycling endosomes in vRNP translocation was also suggested by the fact that vRNPs move concomitantly with recycling transferrin labeled with Alexa 594.

CONCLUSIONS/SIGNIFICANCE: Collectively, our results strongly suggest a previously unrecognized involvement of the intracellular vesicular trafficking pathway in vRNP translocation and provide new insights into the transport of viral structural components to the assembly sites of enveloped viruses.

摘要

背景

副粘病毒在细胞质中合成所有结构成分后,在质膜出芽部位进行组装。尽管病毒核糖核蛋白(vRNP)是感染性病毒粒子的重要组成部分,但 vRNP 向组装部位的转运过程知之甚少。

方法/主要发现:为了分析活感染细胞中 vRNPs 的实时转运,我们创建了一种重组仙台病毒(SeV),rSeVLeGFP,它表达 L 蛋白融合增强型绿色荧光蛋白(eGFP)。rSeVLeGFP 的生长动力学与 wt SeV 相似,并且早在感染后 8 小时即可检测到新合成的 LeGFP。LeGFP 的大部分与 vRNP 的其他成分,NP 和 P 蛋白共定位,这表明 LeGFP 的荧光信号代表 vRNPs 的位置。使用延时数字视频显微镜分析 LeGFP 的运动,发现 LeGFP 沿着微管呈定向和跳跃运动。用诺考达唑处理细胞限制了 vRNP 的运动并减少了子代病毒粒子的产生,而不影响病毒蛋白的合成,这表明微管在 vRNP 转运和病毒组装中的作用。电子显微镜的进一步研究显示,vRNPs 与感染细胞中存在的细胞内囊泡密切相关。此外,vRNPs 与 Rab11a 蛋白共定位,已知 Rab11a 蛋白调节再循环内吞作用途径和高尔基体到质膜的运输。在感染细胞中也观察到 LeGFP 和 Rab11a 之间的同时运动,感染细胞中持续表达 mRFP 标记的 Rab11a。vRNPs 与用 Alexa 594 标记的再循环转铁蛋白一起运动这一事实表明,再循环内体参与了 vRNP 的转运。

结论/意义:总的来说,我们的结果强烈表明细胞内囊泡运输途径以前未被认识到的参与 vRNP 转运,并为包膜病毒结构成分向组装部位的运输提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f67/2881874/807b3886a9f1/pone.0010994.g001.jpg

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