Hsiao Jye-Chian, Chu Li-Wei, Lo Yung-Tsun, Lee Sue-Ping, Chen Tzu-Jung, Huang Cheng-Yen, Ping Yueh-Hsin, Chang Wen
Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan, Republic of China.
Department and Institute of Pharmacology, National Yang-Ming University, Taipei, Taiwan, Republic of China Institute of Biophotonics, National Yang-Ming University, Taipei, Taiwan, Republic of China.
J Virol. 2015 Aug;89(16):8365-82. doi: 10.1128/JVI.00209-15. Epub 2015 Jun 3.
Vaccinia virus, the prototype of the Orthopoxvirus genus in the family Poxviridae, infects a wide range of cell lines and animals. Vaccinia mature virus particles of the WR strain reportedly enter HeLa cells through fluid-phase endocytosis. However, the intracellular trafficking process of the vaccinia mature virus between cellular uptake and membrane fusion remains unknown. We used live imaging of single virus particles with a combination of various cellular vesicle markers, to track fluorescent vaccinia mature virus particle movement in cells. Furthermore, we performed functional interference assays to perturb distinct vesicle trafficking processes in order to delineate the specific route undertaken by vaccinia mature virus prior to membrane fusion and virus core uncoating in cells. Our results showed that vaccinia virus traffics to early endosomes, where recycling endosome markers Rab11 and Rab22 are recruited to participate in subsequent virus trafficking prior to virus core uncoating in the cytoplasm. Furthermore, we identified WASH-VPEF/FAM21-retromer complexes that mediate endosome fission and sorting of virus-containing vesicles prior to virus core uncoating in the cytoplasm.
Vaccinia mature virions of the WR strain enter HeLa cells through fluid phase endocytosis. We previously demonstrated that virus-containing vesicles are internalized into phosphatidylinositol 3-phosphate positive macropinosomes, which are then fused with Rab5-positive early endosomes. However, the subsequent process of sorting the virion-containing vesicles prior to membrane fusion remains unclear. We dissected the intracellular trafficking pathway of vaccinia mature virions in cells up to virus core uncoating in cytoplasm. We show that vaccinia mature virions first travel to early endosomes. Subsequent trafficking events require the important endosome-tethered protein VPEF/FAM21, which recruits WASH and retromer protein complexes to the endosome. There, the complex executes endosomal membrane fission and cargo sorting to the Rab11-positive and Rab22-positive recycling pathway, resulting in membrane fusion and virus core uncoating in the cytoplasm.
痘苗病毒是痘病毒科正痘病毒属的原型,可感染多种细胞系和动物。据报道,WR株痘苗成熟病毒颗粒通过液相内吞作用进入HeLa细胞。然而,痘苗成熟病毒在细胞摄取和膜融合之间的细胞内运输过程仍不清楚。我们结合各种细胞囊泡标记物对单个病毒颗粒进行实时成像,以追踪荧光痘苗成熟病毒颗粒在细胞中的运动。此外,我们进行了功能干扰试验,以扰乱不同的囊泡运输过程,从而确定痘苗成熟病毒在细胞中膜融合和病毒核心脱壳之前所采取的具体途径。我们的结果表明,痘苗病毒运输到早期内体,在细胞质中病毒核心脱壳之前,回收内体标记物Rab11和Rab22被招募参与随后的病毒运输。此外,我们鉴定出WASH-VPEF/FAM21-逆转录复合物,它们在细胞质中病毒核心脱壳之前介导内体裂变和含病毒囊泡的分选。
WR株痘苗成熟病毒粒子通过液相内吞作用进入HeLa细胞。我们之前证明,含病毒囊泡被内化到磷脂酰肌醇3-磷酸阳性的巨吞饮小体中,然后与Rab5阳性的早期内体融合。然而,在膜融合之前对含病毒粒子囊泡进行分选的后续过程仍不清楚。我们剖析了痘苗成熟病毒粒子在细胞内直至细胞质中病毒核心脱壳的运输途径。我们表明,痘苗成熟病毒粒子首先运输到早期内体。随后的运输事件需要重要的内体结合蛋白VPEF/FAM21,它将WASH和逆转录蛋白复合物招募到内体。在那里,该复合物执行内体膜裂变和货物分选到Rab11阳性和Rab-22阳性的回收途径,导致细胞质中的膜融合和病毒核心脱壳。