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编码痘苗病毒李斯特株主要分泌蛋白的基因所编码的N端22个氨基酸可作为信号序列,指导外源蛋白的输出。

The N-terminal 22 amino acids encoded by the gene specifying the major secreted protein of vaccinia virus, strain Lister, can function as a signal sequence to direct the export of a foreign protein.

作者信息

Patel A H, Subak-Sharpe J H, Stow N D

机构信息

Medical Research Council Virology Unit, University of Glasgow, UK.

出版信息

Virus Res. 1992 Dec;26(3):197-212. doi: 10.1016/0168-1702(92)90013-y.

DOI:10.1016/0168-1702(92)90013-y
PMID:1492495
Abstract

Cells infected with vaccinia virus strain Lister secrete a polypeptide of approximate molecular weight 35,000 (35K) into the medium. Previous studies identified a cleavable, hydrophobic region of 17 amino acids in the 35K protein which could potentially function as a signal peptide to target the protein to the secretory pathway. Here we report the use of the expression-secretion signals derived from the 35K gene to direct export and secretion of a foreign protein. Vaccinia virus recombinants carrying the bacterial chloramphenicol acetyl transferase gene (cat) immediately downstream from the promoter and the N-terminal coding sequences of the 35K gene were constructed. Our studies show that the N-terminal 22 or 42 amino acids of the 35K protein direct efficient secretion of the CAT protein. However, due to a cryptic glycosylation site within CAT, glycosylated protein was secreted, which reduced enzymatic activity. Activity was restored in the presence of tunicamycin. Removal of the glycosylation site by site-directed mutagenesis abolished glycosylation with no effect on secretion, although CAT activity was again reduced, possibly due to an effect on the active site. The results presented here demonstrate the feasibility of using the promoter and the signal sequence of the 35K gene to generate recombinant viruses for overexpression and secretion of foreign proteins.

摘要

感染痘苗病毒李斯特株的细胞会向培养基中分泌一种分子量约为35,000(35K)的多肽。先前的研究在35K蛋白中鉴定出一个由17个氨基酸组成的可裂解疏水区域,该区域可能作为信号肽将蛋白质靶向分泌途径。在此我们报告利用源自35K基因的表达-分泌信号来指导外源蛋白的输出和分泌。构建了痘苗病毒重组体,其携带紧接在35K基因启动子和N端编码序列下游的细菌氯霉素乙酰转移酶基因(cat)。我们的研究表明,35K蛋白的N端22或42个氨基酸可指导CAT蛋白的高效分泌。然而,由于CAT内存在一个隐蔽的糖基化位点,分泌出了糖基化蛋白,这降低了酶活性。在衣霉素存在的情况下活性得以恢复。通过定点诱变去除糖基化位点消除了糖基化,对分泌没有影响,尽管CAT活性再次降低,可能是由于对活性位点的影响。此处呈现的结果证明了利用35K基因的启动子和信号序列来产生用于外源蛋白过表达和分泌的重组病毒的可行性。

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