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Biosynthesis of glycoproteins E and I of feline herpesvirus: gE-gI interaction is required for intracellular transport.

机译:猫疱疹病毒糖蛋白E和I的生物合成:细胞内运输需要gE-gI相互作用。

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摘要

The biosynthesis of glycoproteins E and I of feline herpesvirus was studied by using the vaccinia virus vTF7-3 expression system. gE and gI were synthesized as N-glycosylated, endoglycosidase H (EndoH)-sensitive precursors with Mrs of 83,000 and 67,000, respectively. When coexpressed, gE and gI formed sodium dodecyl sulfate-sensitive hetero-oligomeric complexes that were readily transported from the endoplasmic reticulum (ER). Concomitantly, the glycoproteins acquired extensive posttranslational modifications, including O glycosylation, leading to an increase in their apparent molecular weights to 95,000 and 80,000 to 100,000 for gE and gI, respectively. In the absence of gE, most gI remained EndoH sensitive. Only a minor population became EndoH resistant, but these molecules were processed aberrantly as indicated by their Mrs (100,000 to 120,000). By immunofluorescence microscopy, gI was detected primarily in the ER but also at the plasma membrane. gE, when expressed by itself, remained EndoH sensitive and was found only in the ER and the nuclear envelope. These results were corroborated by studying the biosynthesis of gE in feline herpesvirus (FHV)-infected cells. In cells infected with wild-type FHV, gE acquired the same co- and posttranslational modifications as during vTF7-3-driven expression. However, an FHV mutant lacking gI failed to produce mature gE. We conclude that gE is retained in the ER, presumably by associating with molecular chaperones, and becomes transport competent only when in a complex with gI.
机译:利用牛痘病毒vTF7-3表达系统研究了猫疱疹病毒糖蛋白E和I的生物合成。 gE和gI合成为对N-糖基化的糖苷内切酶H(EndoH)敏感的前体,Mrs分别为83,000和67,000。当共表达时,gE和gI形成十二烷基硫酸钠敏感的异寡聚复合物,可以很容易地从内质网(ER)转运出来。伴随地,糖蛋白获得了广泛的翻译后修饰,包括O糖基化,导致它们的表观分子量分别对于gE和gI增加至95,000和80,000至100,000。在没有gE的情况下,大多数gI仍对EndoH敏感。只有少数人对EndoH产生抗药性,但是这些分子按照其夫人的说法被异常加工(100,000至120,000)。通过免疫荧光显微镜检查,主要在急诊室中但在质膜上也检测到了gI。 gE单独表达时仍对EndoH敏感,仅在ER和核包膜中发现。通过研究猫疱疹病毒(FHV)感染细胞中gE的生物合成,证实了这些结果。在被野生型FHV感染的细胞中,gE获得了与vTF7-3驱动表达过程相同的共翻译和翻译后修饰。但是,缺乏gI的FHV突变体无法产生成熟的gE。我们得出的结论是,gE可能通过与分子伴侣结合而保留在ER中,并且仅在与gI形成复合物时才具有运输能力。

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