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N-糖基化对寨卡病毒E蛋白分泌、病毒组装及感染性的作用

Role of N-glycosylation on Zika virus E protein secretion, viral assembly and infectivity.

作者信息

Mossenta M, Marchese S, Poggianella M, Slon Campos J L, Burrone O R

机构信息

Molecular Immunology Group, International Centre for Genetic Engineering and Biotechnology, 34149 Trieste, Italy.

Molecular Immunology Group, International Centre for Genetic Engineering and Biotechnology, 34149 Trieste, Italy.

出版信息

Biochem Biophys Res Commun. 2017 Oct 28;492(4):579-586. doi: 10.1016/j.bbrc.2017.01.022. Epub 2017 Jan 7.

Abstract

Zika virus has rapidly spread reaching a global distribution pattern similar to that of dengue virus, and has been associated with serious neurological and developmental pathologies, like congenital malformation during pregnancy and Guillain-Barré syndrome. Sequence analysis of different clinical and laboratory isolates has shown the existence of mutants with loss of the conserved N-glycosylation motif on domain I of protein E that is common to all flaviviruses. We found that loss of E N-linked glycosylation leads to compromised expression and secretion of E ectodomain from mammalian cells. For both, wild type and glycosylation-negative mutant, secretion was independent of co-expression of the PrM viral protein, but highly dependent on temperature. Low temperature (28 °C) favoured secretion, although the glycosylation mutant E ectodomain showed impaired secretion and membrane display compared to the wild type. Production of pseudoviral particles with a West Nile virus replicon packaged with the Zika virus structural proteins C-PrM-E was significantly reduced with the non-glycosylated E. Similarly, glycosylation-negative pseudoviral particles showed impaired infectivity of Vero cells and reduced ability to infect K562 cells upon particles opsonisation with anti-E antibodies.

摘要

寨卡病毒已迅速传播,形成了与登革热病毒相似的全球分布模式,并与严重的神经和发育病理学相关,如孕期先天性畸形和吉兰-巴雷综合征。对不同临床和实验室分离株的序列分析表明,存在蛋白E结构域I上保守的N-糖基化基序缺失的突变体,该基序是所有黄病毒共有的。我们发现E蛋白N-连接糖基化的缺失导致E蛋白胞外结构域从哺乳动物细胞中的表达和分泌受损。对于野生型和糖基化阴性突变体,分泌均不依赖于PrM病毒蛋白的共表达,但高度依赖于温度。低温(28°C)有利于分泌,尽管与野生型相比,糖基化突变体E蛋白胞外结构域的分泌和膜展示受损。用寨卡病毒结构蛋白C-PrM-E包装的西尼罗河病毒复制子生产假病毒颗粒时,非糖基化的E蛋白会使其产量显著降低。同样,糖基化阴性假病毒颗粒对Vero细胞的感染性受损,在用抗E抗体调理颗粒后感染K562细胞的能力也降低。

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