Department of Biological and Environmental Science and Nanoscience Center, University of Jyvaskyla, Jyvaskyla, Finland.
Laboratory for Fluorescence Dynamics, University of California, Irvine, California, USA.
Sci Rep. 2018 Jan 18;8(1):1152. doi: 10.1038/s41598-018-19582-w.
Parvoviral genome translocation from the plasma membrane into the nucleus is a coordinated multistep process mediated by capsid proteins. We used fast confocal microscopy line scan imaging combined with image correlation methods including auto-, pair- and cross-correlation, and number and brightness analysis, to study the parvovirus entry pathway at the single-particle level in living cells. Our results show that the endosome-associated movement of virus particles fluctuates from fast to slow. Fast transit of single cytoplasmic capsids to the nuclear envelope is followed by slow movement of capsids and fast diffusion of capsid fragments in the nucleoplasm. The unique combination of image analyses allowed us to follow the fate of intracellular single virus particles and their interactions with importin β revealing previously unknown dynamics of the entry pathway.
细小病毒基因组从质膜向核内的易位是一个由衣壳蛋白介导的协调的多步骤过程。我们使用快速共聚焦显微镜线扫描成像结合图像相关方法,包括自相关、对相关和交叉相关,以及数量和亮度分析,在活细胞中研究了单个颗粒水平的细小病毒进入途径。我们的结果表明,病毒颗粒与内体相关的运动从快速到缓慢波动。细胞质衣壳快速转运到核膜后,衣壳的缓慢运动和衣壳片段在核质中的快速扩散。图像分析的独特组合使我们能够跟踪细胞内单个病毒颗粒的命运及其与 importin β 的相互作用,揭示了以前未知的进入途径动态。