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在蚊细胞中培养的登革1型和登革2型病毒的包膜糖蛋白在潜在糖基化位点的利用上存在差异。

The envelope glycoproteins of dengue 1 and dengue 2 viruses grown in mosquito cells differ in their utilization of potential glycosylation sites.

作者信息

Johnson A J, Guirakhoo F, Roehrig J T

机构信息

Division of Vector-Borne Infectious Diseases, Centers for Disease Control and Prevention, Fort Collins, Colorado 80522.

出版信息

Virology. 1994 Sep;203(2):241-9. doi: 10.1006/viro.1994.1481.

Abstract

We have previously isolated and characterized two dengue (DEN) 2 viruses mutant in their fusion-from-within (FFWI) phenotype in the insect cell line C6/36. Both viruses lost a potential glycosylation site (Asn-153) in the envelope (E) glycoprotein. To determine whether the change in FFWI phenotype was due to a change in E-glycoprotein glycosylation, we characterized the patterns of glycosylation on the E-glycoprotein of wild-type DEN 1 and DEN 2 viruses. The E-glycoproteins were isolated from purified virus grown in Aedes albopictus C6/36 cells, by use of high-performance size-exclusion chromatography. The tryptic maps of wild-type glycosylated and enzymatically (PNGase F) deglycosylated E-glycoproteins were compared by reverse-phase high-performance liquid chromatography. The DEN 1 virus E-glycoprotein was found to have two peaks in the tryptic map that exhibited shifts after deglycosylation, whereas the DEN 2 virus E-glycoprotein had only one. Besides the potential glycosylation site at Asn-153, both DEN 1 and DEN 2 virus E-glycoproteins have another potential site located at Asn-67. Amino-terminal sequencing of the shifted peaks revealed that DEN 2 virus E-glycoprotein is glycosylated only at Asn-67; however, DEN 1 virus E-glycoprotein is glycosylated at both Asn-67 and Asn-153. These DEN virus serotypes are thus heterogeneous in their use of glycosylation sites. We also determined by a lectin-binding assay that the attached carbohydrates for both viruses were likely to be of the high-mannose type.

摘要

我们之前在昆虫细胞系C6/36中分离并鉴定了两种登革2型(DEN2)病毒,它们具有从内融合(FFWI)表型突变。两种病毒的包膜(E)糖蛋白都失去了一个潜在的糖基化位点(Asn-153)。为了确定FFWI表型的变化是否是由于E糖蛋白糖基化的改变,我们对野生型DEN1和DEN2病毒E糖蛋白的糖基化模式进行了鉴定。通过高效尺寸排阻色谱法,从白纹伊蚊C6/36细胞中生长的纯化病毒中分离出E糖蛋白。通过反相高效液相色谱法比较野生型糖基化和酶促(PNGase F)去糖基化E糖蛋白的胰蛋白酶图谱。发现DEN1病毒E糖蛋白在胰蛋白酶图谱中有两个峰,去糖基化后出现位移,而DEN2病毒E糖蛋白只有一个峰。除了Asn-153处的潜在糖基化位点外,DEN1和DEN2病毒E糖蛋白都有另一个位于Asn-67的潜在位点。对位移峰的氨基末端测序表明,DEN2病毒E糖蛋白仅在Asn-67处糖基化;然而,DEN1病毒E糖蛋白在Asn-67和Asn-153处均糖基化。因此,这些登革病毒血清型在糖基化位点的使用上是异质的。我们还通过凝集素结合试验确定,两种病毒附着的碳水化合物可能都是高甘露糖型。

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