Whitt M A, Chong L, Rose J K
Department of Pathology, Yale University School of Medicine, New Haven, Connecticut 06510.
J Virol. 1989 Sep;63(9):3569-78. doi: 10.1128/JVI.63.9.3569-3578.1989.
We have used transient expression of the wild-type vesicular stomatitis virus (VSV) glycoprotein (G protein) from cloned cDNA to rescue a temperature-sensitive G protein mutant of VSV in cells at the nonpermissive temperature. Using cDNAs encoding G proteins with deletions in the normal 29-amino-acid cytoplasmic domain, we determined that the presence of either the membrane-proximal 9 amino acids or the membrane-distal 12 amino acids was sufficient for rescue of the temperature-sensitive mutant. G proteins with cytoplasmic domains derived from other cellular or viral G proteins did not rescue the mutant, nor did G proteins with one or three amino acids of the normal cytoplasmic domain. Rescue correlated directly with the ability of the G proteins to be incorporated into virus particles. This was shown by analysis of radiolabeled particles separated on sucrose gradients as well as by electron microscopy of rescued virus after immunogold labeling. Quantitation of surface expression showed that all of the mutated G proteins were expressed less efficiently on the cell surface than was wild-type G protein. However, we were able to correct for differences in rescue efficiency resulting from differences in the level of surface expression by reducing wild-type G protein expression to levels equivalent to those observed for the mutated G proteins. Our results provide evidence that at least a portion of the cytoplasmic domain is required for efficient assembly of the VSV G protein into virions during virus budding.
我们利用从克隆的互补DNA(cDNA)中瞬时表达野生型水泡性口炎病毒(VSV)糖蛋白(G蛋白),在非允许温度下的细胞中拯救了VSV的一个温度敏感型G蛋白突变体。使用编码在正常29个氨基酸的胞质结构域中有缺失的G蛋白的cDNA,我们确定膜近端的9个氨基酸或膜远端的12个氨基酸的存在足以拯救该温度敏感型突变体。具有源自其他细胞或病毒G蛋白的胞质结构域的G蛋白不能拯救该突变体,具有正常胞质结构域中一个或三个氨基酸的G蛋白也不能拯救该突变体。拯救与G蛋白掺入病毒颗粒的能力直接相关。这通过对在蔗糖梯度上分离的放射性标记颗粒的分析以及通过免疫金标记后对拯救病毒的电子显微镜观察得以证明。表面表达的定量分析表明,所有突变的G蛋白在细胞表面的表达效率均低于野生型G蛋白。然而,我们能够通过将野生型G蛋白的表达水平降低至与突变G蛋白所观察到的水平相当,来校正因表面表达水平差异导致的拯救效率差异。我们的结果提供了证据,表明在病毒出芽过程中,至少部分胞质结构域对于VSV G蛋白有效组装到病毒粒子中是必需的。