Westra D F, Glazenburg K L, Harmsen M C, Tiran A, Jan Scheffer A, Welling G W, Hauw The T, Welling-Wester S
Department of Medical Microbiology, University of Groningen, The Netherlands.
J Virol. 1997 Mar;71(3):2285-91. doi: 10.1128/JVI.71.3.2285-2291.1997.
In mammalian cells, formation of heterooligomers consisting of the glycoproteins H and L (gH and gL) of herpes simplex virus type 1 is essential for the cell-to-cell spread of virions and for the penetration of virions into cells. We examined whether formation of gH1/gL1 heterooligomers and cell surface expression of the complex occurs in insect cells. Three recombinant baculoviruses, expressing gL1, gH1, and truncated gH1 (gH1t), which lacks the transmembrane region, were constructed. It was shown that recombinant gH1/gL1 and gH1t/gL1 heterooligomers were produced in insect cells. As in mammalian cells, gH1 and gH1t were not detected on the surfaces of insect cells in the absence of gL1. When coexpressed with gL1, recombinant gH1 was displayed on the surfaces of insect cells. Coexpression of gH1t and gL1 resulted in secretion of the gH1t/gL1 complex into the cell culture medium, indicating that gH1t is also transported to the surfaces of insect cells. Our results indicate that the process of folding and intracellular transport of gH1 and gL1 is comparable in insect cells and mammalian cells and that the baculovirus expression system can be used to examine the complex formation and the intracellular transport of gH1 and gL1. The availability of secreted gH1t/gL1 complex offers the opportunity to further investigate the immunological properties of this complex.
在哺乳动物细胞中,单纯疱疹病毒1型糖蛋白H和L(gH和gL)组成的异源寡聚体的形成对于病毒粒子在细胞间的传播以及病毒粒子进入细胞至关重要。我们研究了gH1/gL1异源寡聚体的形成以及该复合物在昆虫细胞中的细胞表面表达是否会发生。构建了三种表达gL1、gH1和缺少跨膜区域的截短型gH1(gH1t)的重组杆状病毒。结果表明,重组gH1/gL1和gH1t/gL1异源寡聚体在昆虫细胞中产生。与在哺乳动物细胞中一样,在没有gL1的情况下,昆虫细胞表面未检测到gH1和gH1t。当与gL1共表达时,重组gH1呈现在昆虫细胞表面。gH1t和gL1的共表达导致gH1t/gL1复合物分泌到细胞培养基中,表明gH1t也被转运到昆虫细胞表面。我们的结果表明,gH1和gL1的折叠和细胞内运输过程在昆虫细胞和哺乳动物细胞中具有可比性,并且杆状病毒表达系统可用于研究gH1和gL1的复合物形成及细胞内运输。分泌型gH1t/gL1复合物的可得性为进一步研究该复合物的免疫学特性提供了机会。