首页> 美国卫生研究院文献>Journal of Virology >Visualization of Intracellular Movement of Vaccinia Virus Virions Containing a Green Fluorescent Protein-B5R Membrane Protein Chimera
【2h】

Visualization of Intracellular Movement of Vaccinia Virus Virions Containing a Green Fluorescent Protein-B5R Membrane Protein Chimera

机译:含绿色荧光蛋白-B5R膜蛋白嵌合体的牛痘病毒病毒颗粒的细胞内运动的可视化

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

We produced an infectious vaccinia virus that expressed the B5R envelope glycoprotein fused to the enhanced green fluorescent protein (GFP), allowing us to visualize intracellular virus movement in real time. Previous transfection studies indicated that fusion of GFP to the C-terminal cytoplasmic domain of B5R did not interfere with Golgi localization of the viral protein. To determine whether B5R-GFP was fully functional, we started with a B5R deletion mutant that made small plaques and inserted the B5R-GFP gene into the original B5R locus. The recombinant virus made normal-sized plaques and acquired the ability to form actin tails, indicating reversal of the mutant phenotype. Moreover, immunogold electron microscopy revealed that both intracellular enveloped virions (IEV) and extracellular enveloped virions contained B5R-GFP. By confocal microscopy of live infected cells, we visualized individual fluorescent particles, corresponding to IEV in size and shape, moving from a juxtanuclear location to the periphery of the cell, where they usually collected prior to association with actin tails. The fluorescent particles could be seen emanating from cells at the tips of microvilli. Using a digital camera attached to an inverted fluorescence microscope, we acquired images at 1 frame/s. At this resolution, IEV movement appeared saltatory; in some frames there was no net movement, whereas in others movement exceeded 2 μm/s. Further studies indicated that IEV movement was reversibly arrested by the microtubule-depolymerizing drug nocodazole. This result, together with the direction, speed, and saltatory motion of IEV, was consistent with a role for microtubules in intracellular transport of IEV.
机译:我们产生了一种感染性痘苗病毒,该病毒表达与增强型绿色荧光蛋白(GFP)融合的B5R包膜糖蛋白,使我们能够实时观察细胞内病毒的运动。先前的转染研究表明,GFP与B5R的C末端胞质域融合不会干扰病毒蛋白的高尔基体定位。为了确定B5R-GFP是否功能齐全,我们从一个B5R缺失突变体开始,该突变体会产生小噬菌斑并将B5R-GFP基因插入原始的B5R基因座。重组病毒产生了正常大小的噬菌斑并获得了形成肌动蛋白尾巴的能力,表明突变表型的逆转。此外,免疫金电子显微镜显示细胞内包膜病毒粒子(IEV)和细胞外包膜病毒粒子都包含B5R-GFP。通过共聚焦显微镜观察活的感染细胞,我们观察到单个荧光颗粒,其大小和形状与IEV相对应,从近核位置移动到细胞外围,在与肌动蛋白尾巴结合之前通常会在那里收集。可以看到荧光颗粒是从微绒毛尖端的细胞发出的。使用连接到倒置荧光显微镜的数码相机,我们以1帧/秒的速度获取图像。在这个分辨率下,独立电动车的运动似乎很稳定。在某些框架中,没有净运动,而在其他框架中,运动超过2μm/ s。进一步的研究表明,微管解聚药物诺考达唑可逆地阻止IEV运动。该结果,以及IEV的方向,速度和咸运动,与微管在IEV的细胞内运输中的作用是一致的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号