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在衣霉素存在的情况下劳斯肉瘤病毒未糖基化包膜糖蛋白的生物合成。

Biosynthesis of an unglycosylated envelope glycoprotein of Rous sarcoma virus in the presence of tunicamycin.

作者信息

Diggelmann H

出版信息

J Virol. 1979 Jun;30(3):799-804. doi: 10.1128/JVI.30.3.799-804.1979.

Abstract

Cells stably infected with Rous sarcoma virus were treated with tunicamycin to prevent the glycosylation of the precursor (pr92gp) to the two viral envelope glycoproteins gp85 and gp35. Pretreatment of the cells for 4 h with the antibiotic resulted in a 90% reduction in [3H]mannose incorporation into total cellular glycoproteins, intracellular viral glycoproteins, and released virus particles. Protein synthesis and virus particle formation were not significantly affected by the treatment. A new polypeptide made in the presence of the drug was identified by immunoprecipitation of pulse-labeled cell lysates with monospecific anti-gp85 and anti-gp35 sera. This polypeptide, migrating on sodium dodecyl sulfate-polyacrylamide gels as a molecule of 62,000 daltons (pr62), contained no [3H]mannose, was labeled with [S35]methionine and [3H]arginine, could not be chased into the higher-molecular-weight glycosylated form, and contained the same [3H]arginine tryptic peptides as pr92gp. The unglycosylated pr62 was still detectable 2 h after the pulse labeling of the cells. The lack of glycosylation of pr62 did not seem to reduce its stability. No clear evidence for the incorporation of this molecule or its cleavage products into viral particles could be obtained. To code for an envelope polypeptide of 62,000 daltons, only about 1,500 nucleotides or 15% of the total coding capacity of the virus are needed.

摘要

用衣霉素处理稳定感染劳氏肉瘤病毒的细胞,以阻止病毒两种包膜糖蛋白gp85和gp35的前体(pr92gp)进行糖基化。用该抗生素对细胞进行4小时预处理,导致掺入总细胞糖蛋白、细胞内病毒糖蛋白和释放的病毒颗粒中的[3H]甘露糖减少了90%。蛋白质合成和病毒颗粒形成未受到该处理的显著影响。通过用单特异性抗gp85和抗gp35血清对脉冲标记的细胞裂解物进行免疫沉淀,鉴定出在药物存在下产生的一种新多肽。这种多肽在十二烷基硫酸钠-聚丙烯酰胺凝胶上迁移时为62,000道尔顿的分子(pr62),不含[3H]甘露糖,用[S35]甲硫氨酸和[3H]精氨酸标记,不能被追踪到更高分子量的糖基化形式,并且含有与pr92gp相同的[3H]精氨酸胰蛋白酶肽段。在细胞脉冲标记后2小时仍可检测到未糖基化的pr62。pr62缺乏糖基化似乎并未降低其稳定性。未获得该分子或其裂解产物掺入病毒颗粒的明确证据。要编码一个62,000道尔顿的包膜多肽,仅需要约1500个核苷酸,即病毒总编码能力的15%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85d3/353390/5547d5bfc90c/jvirol00186-0167-a.jpg

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