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使用痘苗病毒/噬菌体T7杂交表达系统在中华仓鼠卵巢细胞中进行重组蛋白合成。

Recombinant protein synthesis in Chinese hamster ovary cells using a vaccinia virus/bacteriophage T7 hybrid expression system.

作者信息

Ramsey-Ewing A, Moss B

机构信息

Laboratory of Viral Diseases, NIAID, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 1996 Jul 12;271(28):16962-6. doi: 10.1074/jbc.271.28.16962.

Abstract

The vaccinia virus/bacteriophage T7 expression system was adapted to Chinese hamster ovary (CHO) cells. Vaccinia virus undergoes abortive infection in CHO cells, which is characterized by a sharp reduction in protein synthesis at the stage of viral intermediate gene expression. We determined that expression of a T7 promoter-regulated chloramphenicol acetyltransferase gene was at least 20 times more efficient in permissive BS-C-1 than in CHO cells. The encephalomyocarditis virus 5'-untranslated region, which confers cap-independent translatability to mRNA, stimulated recombinant protein synthesis by 10-fold in both cell lines, maintaining the advantage of the BS-C-1 cells over CHO cells. Since the cowpox virus hr gene overcomes vaccinia virus host range restriction in CHO cells, we constructed a recombinant virus that carries an intact hr gene in addition to the T7 RNA polymerase gene. With this virus, synthesis of T7 RNA polymerase was enhanced and production of a recombinant protein occurred in CHO cells at the level observed in permissive cell lines. Extension of the vaccinia virus/bacteriophage T7 expression system to CHO cells should be of wide interest, as these cells have advantages for preparation of recombinant proteins in research and biotechnology.

摘要

痘苗病毒/噬菌体T7表达系统被应用于中国仓鼠卵巢(CHO)细胞。痘苗病毒在CHO细胞中发生流产感染,其特征是在病毒中间基因表达阶段蛋白质合成急剧减少。我们确定,T7启动子调控的氯霉素乙酰转移酶基因在允许性的BS-C-1细胞中的表达效率至少比在CHO细胞中高20倍。赋予mRNA不依赖帽子翻译能力的脑心肌炎病毒5'非翻译区在两种细胞系中均使重组蛋白合成提高了10倍,保持了BS-C-1细胞相对于CHO细胞的优势。由于牛痘病毒hr基因克服了痘苗病毒在CHO细胞中的宿主范围限制,我们构建了一种重组病毒,除了T7 RNA聚合酶基因外,还携带完整的hr基因。利用这种病毒,T7 RNA聚合酶的合成得以增强,并且在CHO细胞中产生重组蛋白的水平与在允许性细胞系中观察到的水平相当。将痘苗病毒/噬菌体T7表达系统扩展到CHO细胞应该会引起广泛关注,因为这些细胞在研究和生物技术中制备重组蛋白具有优势。

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