School of Life Science , Beijing Institute of Technology , Beijing 100081 , China.
Anal Chem. 2018 Mar 6;90(5):3452-3459. doi: 10.1021/acs.analchem.7b05183. Epub 2018 Feb 14.
Entry is the first and critical step of viral infection, while the entry mechanisms of many viruses are still unclear due to the lack of efficient technology. In this report, by taking advantage of the single-virion fluorescence tracking technique and simultaneous dual-labeling methods for viruses we developed, the entry pathway of vaccinia virus from tiantan strain (VACV-TT) was studied in real-time. By combining with the technologies of virology and cell biology, we found that VACV-TT moved toward the Vero cell body along the filopodia induced by the virions interaction, and then, they were internalized through macropinocytosis, which was an actin-, ATP-dependent but clathrin-, caveolin-independent endocytosis. These results are of significant importance for VACV-TT-based vaccine vectors and oncolytic virus study.
进入是病毒感染的第一步和关键步骤,而由于缺乏有效的技术,许多病毒的进入机制仍然不清楚。在本报告中,我们利用单病毒荧光跟踪技术和我们开发的病毒的同时双标记方法,实时研究了天坛株(VACV-TT)痘苗病毒的进入途径。通过结合病毒学和细胞生物学技术,我们发现 VACV-TT 沿着病毒相互作用诱导的丝状伪足向 Vero 细胞体移动,然后通过胞饮作用内化,这是一种肌动蛋白、ATP 依赖性但网格蛋白、小窝蛋白非依赖性的内吞作用。这些结果对基于 VACV-TT 的疫苗载体和溶瘤病毒研究具有重要意义。