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在缺乏6K蛋白的情况下产生的塞姆利基森林病毒具有改变的刺突结构,这可通过膜融合能力降低来揭示。

Semliki Forest virus produced in the absence of the 6K protein has an altered spike structure as revealed by decreased membrane fusion capacity.

作者信息

McInerney Gerald M, Smit Jolanda M, Liljeström Peter, Wilschut Jan

机构信息

Microbiology and Tumour Biology Centre, Karolinska Institutet, Stockholm, Sweden.

出版信息

Virology. 2004 Aug 1;325(2):200-6. doi: 10.1016/j.virol.2004.04.043.

Abstract

We examined the kinetics of membrane fusion of wild type (wt) and Delta6K mutant Semliki Forest virus in a liposomal model system. The final extent of membrane fusion of the mutant (at pH 5.5) was approximately one third that of the wt virus, although the level of E1 (fusion protein) trimerization was, in fact, greater than that of the wt. Studies on the effect of exposure of the viruses to low pH revealed that the Delta6K mutant was inactivated much more rapidly than the wt virus. It is this instability of the mutant particles which probably accounts for the lower fusion levels. Moreover, fusion of the Delta6K mutant was significantly increased by the inclusion of lipid-conjugated heparin in the target liposomes. We conclude that the presence of the 6K protein either in the particle or during the assembly process is important for the correct assembly of the fully infectious SFV particle.

摘要

我们在脂质体模型系统中研究了野生型(wt)和Delta6K突变型塞姆利基森林病毒的膜融合动力学。突变体(在pH 5.5时)的膜融合最终程度约为野生型病毒的三分之一,尽管E1(融合蛋白)三聚化水平实际上高于野生型。对病毒暴露于低pH值影响的研究表明,Delta6K突变体比野生型病毒更快失活。可能正是突变体颗粒的这种不稳定性导致了较低的融合水平。此外,通过在靶脂质体中加入脂质偶联的肝素,Delta6K突变体的融合显著增加。我们得出结论,6K蛋白无论是在颗粒中还是在组装过程中存在,对于完全感染性SFV颗粒的正确组装都很重要。

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