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Biarsenical Labeling of Vesicular Stomatitis Virus Encoding Tetracysteine-Tagged M Protein Allows Dynamic Imaging of M Protein and Virus Uncoating in Infected Cells▿

机译:带有Tetracysteine标记的M蛋白的水泡性口炎病毒的双砷标记可对M蛋白进行动态成像,并在感染细胞中去除病毒涂层

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摘要

A recombinant vesicular stomatitis virus (VSV-PeGFP-M-MmRFP) encoding enhanced green fluorescent protein fused in frame with P (PeGFP) in place of P and a fusion matrix protein (monomeric red fluorescent protein fused in frame at the carboxy terminus of M [MmRFP]) at the G-L gene junction, in addition to wild-type (wt) M protein in its normal location, was recovered, but the MmRFP was not incorporated into the virions. Subsequently, we generated recombinant viruses (VSV-PeGFP-ΔM-Mtc and VSV-ΔM-Mtc) encoding M protein with a carboxy-terminal tetracysteine tag (Mtc) in place of the M protein. These recombinant viruses incorporated Mtc at levels similar to M in wt VSV, demonstrating recovery of infectious rhabdoviruses encoding and incorporating a tagged M protein. Virions released from cells infected with VSV-PeGFP-ΔM-Mtc and labeled with the biarsenical red dye (ReAsH) were dually fluorescent, fluorescing green due to incorporation of PeGFP in the nucleocapsids and red due to incorporation of ReAsH-labeled Mtc in the viral envelope. Transport and subsequent association of M protein with the plasma membrane were shown to be independent of microtubules. Sequential labeling of VSV-ΔM-Mtc-infected cells with the biarsenical dyes ReAsH and FlAsH (green) revealed that newly synthesized M protein reaches the plasma membrane in less than 30 min and continues to accumulate there for up to 2 1/2 hours. Using dually fluorescent VSV, we determined that following adsorption at the plasma membrane, the time taken by one-half of the virus particles to enter cells and to uncoat their nucleocapsids in the cytoplasm is approximately 28 min.
机译:重组水泡性口炎病毒(VSV-PeGFP-M-MmRFP)编码与P(PeGFP)框内融合的增强绿色荧光蛋白(PGFP)和融合基质蛋白(在M羧基末端框内融合的单体红色荧光蛋白)除了在正常位置的野生型(wt)M蛋白外,还恢复了GL基因连接处的[MmRFP]),但MmRFP并未掺入病毒体中。随后,我们生成了重组病毒(VSV-PeGFP-ΔM-Mtc和VSV-ΔM-Mtc),该病毒编码带有羧基末端四半胱氨酸标签(Mtc)的M蛋白来代替M蛋白。这些重组病毒以与wt VSV中的M相似的水平掺入了Mtc,表明回收了编码并掺入了标记的M蛋白的传染性弹状病毒。从感染了VSV-PeGFP-ΔM-Mtc的细胞释放并被双砷红色染料(ReAsH)标记的病毒颗粒呈双重荧光,由于在核衣壳中掺入了PeGFP而发出绿色荧光,而由于在病毒中掺入了ReAsH标记的Mtc而呈现红色。信封。 M蛋白与质膜的转运和随后的缔合显示与微管无关。用双砷染料ReAsH和FlAsH(绿色)对VSV-ΔM-Mtc感染的细胞进行顺序标记显示,新合成的M蛋白在不到30分钟的时间内到达质膜,并继续在质膜上积累长达2 1/2小时。使用双重荧光VSV,我们确定在质膜上吸附后,一半的病毒颗粒进入细胞并在细胞质中释放其核衣壳所需的时间约为28分钟。

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