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Localization of Rabies Virus Glycoprotein into the Endoplasmic Reticulum Produces Immunoprotective Antigen

机译:狂犬病病毒糖蛋白在内质网中的定位产生免疫保护性抗原

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Rabies virus surface glycoprotein (rabies G-protein) with (G+RS) and without (G?RS) endoplasmic reticulum retrieval signal was expressed and characterized in tobacco plants. Transgenically expressed rabies G-protein was estimated at 0.015–0.38 % of total leaf protein. The relative migration of the rabies G-protein on SDS-PAGE was at the position, as anticipated for the viral coat protein (~66 kDa). Immunolocalization by confocal microscopy established that immunoprotective G+RS expressed in tobacco was primarily confined to ER. G+RS showed binding to Con A lectin and was susceptible to N-glycosidase F activity similar to native rabies G-protein. However, the G?RS transgenically expressed in tobacco leaves was glycosylated differently and was resitant to N-glycosidase F. Immunological studies and Rapid Fluorescent Foci Inhibition Test (RFFIT) showed that G+RS was immunogenic and immunoprotective, whereas G?RS was moderately immunogenic but non-protective against live virus challenge. Hence, plants can express the antigenic component of rabies virus with suitable glycosylation, which is important to give protection against rabies virus infection.
机译:在烟草植物中表达并鉴定了带有(G + RS)和不带有(G?RS)内质网检索信号的狂犬病病毒表面糖蛋白(狂犬病G蛋白)。经转基因表达的狂犬病G蛋白估计占叶片总蛋白的0.015-0.38%。狂犬病G蛋白在SDS-PAGE上的相对迁移处于该位置,正如病毒外壳蛋白(〜66 kDa)所预期的那样。通过共聚焦显微镜进行的免疫定位确定了在烟草中表达的免疫保护性G + RS主要局限于ER。 G + RS显示与Con A凝集素结合,并且对N-糖苷酶F活性敏感,类似于天然狂犬病G蛋白。但是,在烟叶中转基因表达的G?RS糖基化程度不同,并且与N-糖苷酶F相对。具有免疫原性,但不能抵抗活病毒攻击。因此,植物可以通过适当的糖基化表达狂犬病病毒的抗原成分,这对于防止狂犬病病毒感染很重要。

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