首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Viral glycoproteins destined for apical or basolateral plasma membrane domains traverse the same Golgi apparatus during their intracellular transport in doubly infected Madin-Darby canine kidney cells
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Viral glycoproteins destined for apical or basolateral plasma membrane domains traverse the same Golgi apparatus during their intracellular transport in doubly infected Madin-Darby canine kidney cells

机译:在双感染的Madin-Darby犬肾细胞中用于顶端或基底外侧质膜结构域的病毒糖蛋白在细胞内运输过程中会穿越同一高尔基体

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摘要

Madin-Darby canine kidney (MDCK) cells can sustain double infection with pairs of viruses of opposite budding polarity (simian virus 5 [SV5] and vesicular stomatitis virus [VSV] or influenza and VSV), and we observed that in such cells the envelope glycoproteins of the two viruses are synthesized simultaneously and assembled into virions at their characteristic sites. Influenza and SV5 budded exclusively from the apical plasma membrane of the cells, while VSV emerged only from the basolateral surfaces. Immunoelectron microscopic examination of doubly infected MDCK cells showed that the influenza hemagglutinin (HA) and the VSV G glycoproteins traverse the same Golgi apparatus and even the same Golgi cisternae. This indicates that the pathways of the two proteins towards the plasma membrane do not diverge before passage through the Golgi apparatus and therefore that critical sorting steps must take place during or after passage of the glycoproteins through this organelle. After its passage through the Golgi, the HA accumulated primarily at the apical membrane, where influenza virion assembly occurred. A small fraction of HA did, however, appear on the lateral surface and was incorporated into the envelope of budding VSV virions. Although predominantly found on the basolateral surface, significant amounts of G protein were observed on the apical plasma membrane well before disruption of the tight junctions was detectable. Nevertheless, assembly of VSV virions was restricted to the basolateral domain and in doubly infected cells the G protein was only infrequently incorporated into the envelope of budding influenza virions. These observations indicate that the site of VSV budding is not determined exclusively by the presence of G polypeptides. Therefore, it is likely that, at least for VSV, other cellular or viral components are responsible for the selection of the appropriate budding domain.
机译:Madin-Darby犬肾(MDCK)细胞可以用极性相反的成对病毒(猿猴病毒5 [SV5]和水泡性口炎病毒[VSV]或流行性感冒和VSV)持续感染两次,我们观察到这种细胞的包膜两种病毒的糖蛋白同时合成,并在其特征位点组装成病毒体。流感和SV5仅从细胞的顶质膜出芽,而VSV仅从基底外侧表面出芽。对双重感染的MDCK细胞进行的免疫电子显微镜检查显示,流感血凝素(HA)和VSV G糖蛋白横穿同一高尔基体,甚至同一高尔基池。这表明这两种蛋白通向质膜的途径在通过高尔基体之前没有分歧​​,因此关键的分选步骤必须在糖蛋白通过该细胞器的过程中或之后进行。 HA通过高尔基体后,主要聚集在发生病毒粒子组装的顶端膜上。但是,有一小部分的HA确实出现在侧面,并被掺入萌芽的VSV病毒粒子的包膜中。尽管主要在基底外侧表面上发现,但在可检测到紧密连接的破坏之前,在顶质膜上也观察到了大量的G蛋白。尽管如此,VSV病毒体的组装仅限于基底外侧结构域,在双重感染的细胞中,G蛋白很少被掺入萌芽的流感病毒体的包膜中。这些观察结果表明VSV出芽的位点并非仅由G多肽的存在来确定。因此,很可能至少对于VSV,其他细胞或病毒成分负责选择适当的出芽域。

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