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水泡性口炎病毒感染的HeLa细胞中糖蛋白和质膜蛋白前体。

Gycoprotein and protein precursors to plasma membranes in vesicular stomatitis virus infected HeLa cells.

作者信息

Atkinson P H

出版信息

J Supramol Struct. 1978;8(1):89-109. doi: 10.1002/jss.400080108.

Abstract

Vesicular stomatitis virus is known to mature at HeLa cell plasma membranes. To study the process, cells, infected with vesicular stomatitis virus, were fractionated after short term labeling studies (1 min pulse, 1 min chase) to determine the assembly kinetics of G protein and M protein into plasma membranes. Newly synthesized M protein was found released in the supernatant from which free polysomes were sedimented during sucrose gradient analysis of these polysomes. If this M protein is particle bound, it must have a density of less than 1.08 g/ml. About 40% of this M protein so labeled was not sedimentable at 165,000 X g for 16 h. This newly synthesized M protein had not yet assembled into plasma membrane and thus must represent an internal pool. This and previous studies show that it has a subsequent transit time to the plasma membrane of about 2 min. Once associated with plasma membranes, M protein decayed in an approximately logarithmic fashion indicating that newly synthesized M randomly mixes (and turns over) with preexisting M protein. G protein was particle bound in a 1 min pulse, 1 min chase, and was never found released in a soluble form. At the later time when fucose is added to G protein, the oligosaccharide moiety is near to complete, and on completion is about 2,000 in molecular weight. Evidence is presented showing that fucose is probably attached to the N-acetylglucosamine of the protein carbohydrate linkage. G protein to which fucose had just been added was located internally on a membranous fraction of density 1.14 g/ml in sucrose; its subsequent transit time from this pool (which in uninfected cells is between 1--2% of the total cell fucosyl glycoprotein) was about 15 min. Because their densities were different and their transit times were different, internal newly synthesized M and fucosyl G protein which assemble into plasma membranes were not on the same internal membranous component. Association of M protein with the plasma membranes may thus occur from a nonsedimentable soluble cytoplasmic pool by a process of direct adsorption.

摘要

已知水疱性口炎病毒在HeLa细胞质膜上成熟。为了研究这一过程,在短期标记研究(1分钟脉冲,1分钟追踪)后,对感染水疱性口炎病毒的细胞进行分级分离,以确定G蛋白和M蛋白组装到质膜中的动力学。发现新合成的M蛋白释放到上清液中,在对这些多核糖体进行蔗糖梯度分析时,游离多核糖体从该上清液中沉淀下来。如果这种M蛋白与颗粒结合,其密度必须小于1.08 g/ml。如此标记的这种M蛋白中约40%在165,000×g下16小时不可沉淀。这种新合成的M蛋白尚未组装到质膜中,因此一定代表一个内部池。这项研究以及之前的研究表明,它随后到达质膜的转运时间约为2分钟。一旦与质膜结合,M蛋白以近似对数的方式衰减,这表明新合成的M与预先存在的M蛋白随机混合(并周转)。G蛋白在1分钟脉冲、1分钟追踪时与颗粒结合,从未发现以可溶形式释放。在后期向G蛋白添加岩藻糖时,寡糖部分接近完成,完成时分子量约为2000。有证据表明岩藻糖可能连接到蛋白质碳水化合物连接键的N-乙酰葡糖胺上。刚添加岩藻糖的G蛋白位于蔗糖密度为1.14 g/ml的膜性部分内部;它从这个池(在未感染细胞中占总细胞岩藻糖基糖蛋白的1%-2%)的后续转运时间约为15分钟。由于它们的密度不同且转运时间不同,组装到质膜中的内部新合成的M蛋白和岩藻糖基化G蛋白不在同一内部膜性成分上。因此,M蛋白与质膜的结合可能是通过直接吸附过程从不可沉淀的可溶性细胞质池中发生的。

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