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杆状病毒表达的单纯疱疹病毒1型糖蛋白L的表达与鉴定

Expression and characterization of baculovirus expressed herpes simplex virus type 1 glycoprotein L.

作者信息

Ghiasi H, Kaiwar R, Slanina S, Nesburn A B, Wechsler S L

机构信息

Cedars-Sinai Research Institute, Los Angeles, California.

出版信息

Arch Virol. 1994;138(3-4):199-212. doi: 10.1007/BF01379126.

Abstract

We have constructed a recombinant baculovirus expressing high levels of the herpes simplex virus type 1 (HSV-1) glycoprotein L (gL) in Sf9 cells. Sf9 cells infected with this recombinant virus synthesized three polypeptides of 26-27 kDa 28 kDa, and 31 kDa. The 28 and 31 kDa species were sensitive to tunicamycin and N-glycosidase F (PNGase F) treatment, suggesting that they were glycosylated. As shown by both indirect immunofluorescence and Western blot analysis, using polyclonal antibodies to synthetic gL peptides indicated that the baculovirus expressed gL was abundant on the surface of baculovirus gL infected Sf9 cells. A small fraction of the 31 kDa polypeptide was secreted into the extracellular medium as judged by Western blot analysis. The secreted form of gL was completely resistant to Endoglycosidase H (Endo-H), while the membrane associated form of gL was only partially resistant to Endo-H treatment, suggesting that the secreted gL represented a subpopulation of the membrane bound gL. Mice vaccinated with baculovirus expressed gL produced serum antibodies that reacted with authentic HSV-1 gL. However, these mice produced no HSV-1 neutralizing antibody (titer < 1:10) and they were not protected from lethal intraperitoneal or lethal ocular challenge with HSV-1. Thus, when used as a vaccine in the mouse model, gL, similar to our findings with HSV-1 gH, but unlike our results with the other 6 HSV-1 glycoproteins that we have expressed in this baculovirus system, did not provide any protection against HSV-1 challenge.

摘要

我们构建了一种重组杆状病毒,该病毒可在Sf9细胞中高水平表达单纯疱疹病毒1型(HSV-1)糖蛋白L(gL)。感染这种重组病毒的Sf9细胞合成了三种分子量分别为26 - 27 kDa、28 kDa和31 kDa的多肽。28 kDa和31 kDa的蛋白对衣霉素和N-糖苷酶F(PNGase F)处理敏感,表明它们是糖基化的。间接免疫荧光和蛋白质印迹分析均显示,使用针对合成gL肽段的多克隆抗体表明,杆状病毒表达的gL在感染了杆状病毒gL的Sf9细胞表面大量存在。蛋白质印迹分析判断,一小部分31 kDa的多肽分泌到细胞外培养基中。分泌形式的gL对内切糖苷酶H(Endo-H)完全耐药,而与膜相关的gL形式仅部分耐受Endo-H处理,这表明分泌的gL代表膜结合gL的一个亚群。用杆状病毒表达的gL免疫的小鼠产生了与天然HSV-1 gL反应的血清抗体。然而,这些小鼠没有产生HSV-1中和抗体(效价<1:10),并且它们不能抵御HSV-1的致死性腹腔内或致死性眼部攻击。因此,当在小鼠模型中用作疫苗时,gL与我们对HSV-1 gH的研究结果相似,但与我们在该杆状病毒系统中表达的其他6种HSV-蛋白的结果不同,不能提供针对HSV-1攻击的任何保护作用。

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