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糖蛋白gIII与细胞类肝素物质的相互作用介导了伪狂犬病病毒的吸附。

Interaction of glycoprotein gIII with a cellular heparinlike substance mediates adsorption of pseudorabies virus.

作者信息

Mettenleiter T C, Zsak L, Zuckermann F, Sugg N, Kern H, Ben-Porat T

机构信息

Bundesforschungsantalf fuer Viruskrankheiten der Tiere, Tuebingen, Federal Republic of Germany.

出版信息

J Virol. 1990 Jan;64(1):278-86. doi: 10.1128/JVI.64.1.278-286.1990.

Abstract

Glycoprotein gIII is one of the major envelope glycoproteins of pseudorabies virus (PrV) (Suid herpesvirus 1). Although it is dispensable for viral growth, it has been shown to play a prominent role in the attachment of the virus to target cells, since gIII- deletion mutants are severely impaired in adsorption (C. Schreurs, T. C. Mettenleiter, F. Zuckermann, N. Sugg, and T. Ben-Porat, J. Virol. 62:2251-2257, 1988). We show here that during the process of adsorption of PrV, the viral glycoprotein gIII interacts with a cellular heparinlike receptor. This conclusion is based on the following findings. (i) Heparin inhibits plaque formation of PrV by preventing the adsorption of wild-type virions to target cells. However, heparin does not interfere with the plaque formation of PrV mutants that lack glycoprotein gIII. (ii) Wild-type virions readily adsorb to matrix-bound heparin, whereas gIII- mutants do not. (iii) Pretreatment of cells with heparinase reduces considerably the ability of wild-type PrV to adsorb to these cells and to form plaques but does not negatively affect gIII- mutants. (iv) Glycoprotein gIII binds to heparin and appears to do so in conjunction with glycoprotein gII. Although heparin significantly reduces the adsorption of wild-type virus to all cell types tested, quantitative differences in the degree of inhibition of virus adsorption by heparin to different cell types were observed. Different cell types also retain their abilities to adsorb wild-type PrV to a different extent after treatment with heparinase and differ somewhat in their relative abilities to adsorb gIII- mutants. Our results show that while the primary pathway of adsorption of wild-type PrV to cells occurs via the interaction of viral glycoprotein gIII with a cellular heparinlike receptor, an alternative mode of adsorption, which is not dependent on either component, exists. Furthermore, the relative abilities of different cell types to adsorb PrV by the gIII-dependent or the alternative mode vary to some extent.

摘要

糖蛋白gIII是伪狂犬病病毒(PrV)(猪疱疹病毒1型)主要的包膜糖蛋白之一。尽管它对于病毒生长并非必需,但已证明其在病毒与靶细胞的附着过程中发挥重要作用,因为缺失gIII的突变体在吸附方面严重受损(C. Schreurs、T. C. Mettenleiter、F. Zuckermann、N. Sugg和T. Ben-Porat,《病毒学杂志》62:2251 - 2257,1988年)。我们在此表明,在PrV吸附过程中,病毒糖蛋白gIII与一种细胞类肝素受体相互作用。这一结论基于以下发现。(i)肝素通过阻止野生型病毒粒子吸附到靶细胞来抑制PrV的蚀斑形成。然而,肝素并不干扰缺乏糖蛋白gIII的PrV突变体的蚀斑形成。(ii)野生型病毒粒子很容易吸附到基质结合的肝素上,而gIII突变体则不然。(iii)用肝素酶预处理细胞会显著降低野生型PrV吸附到这些细胞并形成蚀斑的能力,但对gIII突变体没有负面影响。(iv)糖蛋白gIII与肝素结合,并且似乎是与糖蛋白gII一起结合。尽管肝素显著降低野生型病毒对所有测试细胞类型的吸附,但观察到肝素对不同细胞类型病毒吸附的抑制程度存在定量差异。不同细胞类型在用肝素酶处理后吸附野生型PrV的能力也有所不同,并且在吸附gIII突变体的相对能力上也略有差异。我们的结果表明,虽然野生型PrV吸附到细胞的主要途径是通过病毒糖蛋白gIII与细胞类肝素受体的相互作用,但存在一种不依赖于任何一种成分的替代吸附模式。此外,不同细胞类型通过gIII依赖模式或替代模式吸附PrV的相对能力在一定程度上有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ea3/249100/558661044c98/jvirol00056-0299-a.jpg

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