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部分蛋白酶解在将鼠白血病病毒膜包膜糖蛋白加工至细胞表面过程中的作用。一种带有未切割糖蛋白的病毒突变体。

Role of partial proteolysis in processing murine leukemia virus membrane envelope glycoproteins to the cell surface. A viral mutant with uncleaved glycoprotein.

作者信息

Machida C A, Kabat D

出版信息

J Biol Chem. 1982 Dec 10;257(23):14018-22.

PMID:7142194
Abstract

We have isolated a mutant Rauscher murine leukemia virus (R-MuLV) with a mutation in its envelope (env) glycoprotein gene. This mutant encodes a membrane glycoprotein with an apparent Mr = 80,000 (gPr80env) that contains both gp70 and p15E antigenic determinants found in the larger wild type R-MuLV env precursor molecule gPr90env. Glycosylation inhibition and peptide mapping analyses indicate that the smaller size of the mutant glycoprotein is caused by a shortening of its polypeptide chain rather than by reduced glycosylation. Unlike gPr90env of wild type R-MuLV which contains Asn-linked high mannose oligosaccharides and is processed by partial proteolysis and by further glycosylation in the Golgi apparatus to produce gp70 plus p15E, the mutant glycoprotein can reach the cell surface without proteolysis. The uncleaved plasma membrane component, which undergoes further glycosylation during its transit through the Golgi apparatus, has an apparent Mr = 85,000. Furthermore, this cell surface glycoprotein is incorporated into released virions which are infectious. However, the mutant envelope glycoproteins on the cell surface do not block the receptors needed for superinfection by wild type MuLV. These results indicate that transport of uncleaved env gene-encoded glycoproteins to the cell surface is not a unique attribute to leukemia-producing recombinant of dual tropic MuLVs (Famulari, N. G., and English, J. K. (1981) J. Virol. 40, 971-976) but can also occur with a mutant of ecotropic MuLV.

摘要

我们分离出了一种劳舍尔鼠白血病病毒(R-MuLV)突变体,其包膜(env)糖蛋白基因发生了突变。该突变体编码一种表观分子量为80,000的膜糖蛋白(gPr80env),它含有在较大的野生型R-MuLV env前体分子gPr90env中发现的gp70和p15E抗原决定簇。糖基化抑制和肽图谱分析表明,突变体糖蛋白较小的尺寸是由其多肽链缩短所致,而非糖基化减少。与野生型R-MuLV的gPr90env不同,gPr90env含有天冬酰胺连接的高甘露糖寡糖,并通过部分蛋白水解以及在高尔基体中进一步糖基化来产生gp70加p15E,而突变体糖蛋白无需蛋白水解就能到达细胞表面。未切割的质膜成分在通过高尔基体的过程中会进一步糖基化,其表观分子量为85,000。此外,这种细胞表面糖蛋白会被整合到具有感染性的释放病毒粒子中。然而,细胞表面的突变体包膜糖蛋白不会阻断野生型MuLV超感染所需的受体。这些结果表明,未切割的env基因编码糖蛋白向细胞表面的转运并非双嗜性MuLV白血病产生重组体所特有的属性(法穆拉里,N.G.,和英格利希,J.K.(1981年)《病毒学杂志》40,971 - 976),嗜亲性MuLV的突变体也可能出现这种情况。

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