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单纯疱疹病毒gE的细胞外结构域足以使其在细胞连接处积聚,但不足以实现细胞间传播。

The extracellular domain of herpes simplex virus gE is sufficient for accumulation at cell junctions but not for cell-to-cell spread.

作者信息

Wisner T, Brunetti C, Dingwell K, Johnson D C

机构信息

Department of Molecular Microbiology and Immunology, Oregon Health Sciences University, Portland, Oregon 97201, USA.

出版信息

J Virol. 2000 Mar;74(5):2278-87. doi: 10.1128/jvi.74.5.2278-2287.2000.

Abstract

Herpes simplex virus (HSV) expresses a number of membrane glycoproteins, including gB, gD, and gH/gL, that function in both entry of virus particles and movement of virus from an infected cell to an uninfected cell (cell-to-cell spread). However, a complex of HSV glycoproteins gE and gI (gE/gI) is required for efficient cell-to-cell spread, especially between cells that form extensive cell junctions, yet it is not necessary for entry of extracellular virions. We previously showed that gE/gI has the capacity to localize specifically to cell junctions; the glycoprotein complex was found at lateral surfaces of cells in contact with other cells but not at those lateral surfaces not forming junctions or at apical surfaces. By virtue of these properties, gE/gI is an important molecular handle on the poorly understood process of cell-to-cell spread. Here, we show that the cytoplasmic domain of gE is important for the proper delivery of gE/gI to lateral surfaces of cells. Without this domain, gE/gI is found on the apical surface of epithelial cells, and more uniformly in the cytoplasm, although incorporation into the virion envelope is unaffected. However, even without proper trafficking signals, a substantial fraction of gE/gI retained the capacity to accumulate at cell junctions. Therefore, the extracellular domain of gE can mediate accumulation of gE/gI at cell junctions, if the glycoprotein can be delivered there, probably through interactions with ligands on the opposing cell. The role of phosphorylation of the cytoplasmic domain of gE was also studied. A second mutant HSV type 1 was constructed in which three serine residues that form a casein kinase II phosphorylation site were changed to alanine residues, reducing phosphorylation by 70 to 80%. This mutation did not affect accumulation at cell junctions or cell-to-cell spread.

摘要

单纯疱疹病毒(HSV)表达多种膜糖蛋白,包括gB、gD和gH/gL,这些糖蛋白在病毒颗粒的进入以及病毒从感染细胞向未感染细胞的移动(细胞间传播)过程中均发挥作用。然而,HSV糖蛋白gE和gI的复合物(gE/gI)对于高效的细胞间传播是必需的,尤其是在形成广泛细胞连接的细胞之间,但对于细胞外病毒粒子的进入并非必需。我们之前表明,gE/gI能够特异性定位于细胞连接;在与其他细胞接触的细胞侧面发现了该糖蛋白复合物,而在未形成连接的侧面或顶端表面则未发现。凭借这些特性,gE/gI是细胞间传播这一了解甚少的过程中的一个重要分子抓手。在此,我们表明gE的胞质结构域对于将gE/gI正确递送至细胞侧面很重要。没有这个结构域,gE/gI会出现在上皮细胞的顶端表面,并且在细胞质中分布更均匀,尽管其并入病毒粒子包膜不受影响。然而,即使没有适当的运输信号,相当一部分gE/gI仍保留在细胞连接处积累的能力。因此,如果该糖蛋白能够被递送至那里,可能是通过与相对细胞上的配体相互作用,gE的细胞外结构域可以介导gE/gI在细胞连接处的积累。我们还研究了gE胞质结构域磷酸化的作用。构建了第二个1型单纯疱疹病毒突变体,其中形成酪蛋白激酶II磷酸化位点的三个丝氨酸残基被替换为丙氨酸残基,使磷酸化减少了70%至80%。这种突变不影响在细胞连接处的积累或细胞间传播。

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