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马尔堡病毒表面蛋白在脊椎动物和昆虫细胞中的细胞内运输与加工

Intracellular transport and processing of the Marburg virus surface protein in vertebrate and insect cells.

作者信息

Becker S, Klenk H D, Mühlberger E

机构信息

Institut fuer Virologie der Philipps-Universitaet-Marburg, Germany.

出版信息

Virology. 1996 Nov 1;225(1):145-55. doi: 10.1006/viro.1996.0582.

DOI:10.1006/viro.1996.0582
PMID:8918541
Abstract

The surface protein (GP) of Marburg virus (MBG) is synthesized as a 90-kDa precursor protein which is cotranslationally modified by the addition of high-mannose sugars (140 kDa). This step is followed by the conversion of the N-linked sugars to endoglycosidase H (endo H)-resistant species and the addition of O-linked oliosaccharides leading to a mature protein of 170-200 kDa approximately 30 min after pulse labelling. The mature form of GP is efficiently transported to the plasma membrane. GP synthesized using the T7 polymerase-driven vaccinia virus expression system was transported with essentially the same kinetics as the authentic GP. However, the protein that is shown to appear 30 min after pulse labeling at the plasma membrane was slighly smaller (160 kDa) than GP incorporated into the virions (170 kDa). Using a recombinant baculovirus, GP was expressed at high levels in insect cells. Three different species could be identified: a 90-kDa unglycosylated GP localized in the cytoplasm and two 140-kDa glycosylated proteins. Characterization of the glycosylated GPs revealed that processing of the oligosaccharides of GP was less efficient in insect cells than in mammalian cells. The majority of GP remained endo H sensitive containing high-mannose type N-linked glycans, whereas only a small fraction became endo H resistant carrying processed N-glycans and O-glycans. Tunicamycin treatment of the GP-expressing cells demonstrated that N-glycosylation is essential for the transport of the MBG surface protein.

摘要

马尔堡病毒(MBG)的表面蛋白(GP)最初合成时是一种90 kDa的前体蛋白,在共翻译过程中通过添加高甘露糖糖基进行修饰(140 kDa)。此步骤之后,N-连接糖基转化为对内切糖苷酶H(endo H)具有抗性的形式,并添加O-连接寡糖,导致在脉冲标记后约30分钟产生一种170 - 200 kDa的成熟蛋白。GP的成熟形式能有效地转运至质膜。使用T7聚合酶驱动的痘苗病毒表达系统合成的GP,其转运动力学与天然GP基本相同。然而,在脉冲标记后30分钟出现在质膜上的蛋白比掺入病毒粒子中的GP略小(160 kDa)(170 kDa)。利用重组杆状病毒,GP在昆虫细胞中高水平表达。可鉴定出三种不同的形式:一种位于细胞质中的90 kDa未糖基化GP和两种140 kDa的糖基化蛋白。对糖基化GP的特性分析表明,与哺乳动物细胞相比,GP寡糖在昆虫细胞中的加工效率较低。大多数GP仍对endo H敏感,含有高甘露糖型N-连接聚糖,而只有一小部分变为对endo H具有抗性,带有加工后的N-聚糖和O-聚糖。用衣霉素处理表达GP的细胞表明,N-糖基化对于MBG表面蛋白的转运至关重要。

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