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Cap-independent translation of mRNA conferred by encephalomyocarditis virus 5' sequence improves the performance of the vaccinia virus/bacteriophage T7 hybrid expression system.

机译:脑心肌炎病毒5'序列赋予mRNA的不依赖于帽的翻译,提高了牛痘病毒/噬菌体T7杂交表达系统的性能。

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摘要

A recombinant vaccinia virus that directs the synthesis of bacteriophage T7 RNA polymerase provides the basis for the expression of genes that are regulated by T7 promoters in mammalian cells. The T7 transcripts, which account for as much as 30% of the total cytoplasmic RNA at 24 hr after infection, are largely uncapped. To improve the translatability of the uncapped RNA, the encephalomyocarditis virus (EMCV) untranslated region (UTR) was inserted between the T7 promoter and the chloramphenicol acetyltransferase (CAT) gene. Experiments with a reticulocyte extract demonstrated that the EMCV UTR conferred efficient and cap-independent translatability to CAT RNA synthesized in vitro by T7 RNA polymerase. In cells infected with recombinant vaccinia viruses containing the T7 promoter-regulated CAT gene, the EMCV UTR increased the amount of CAT RNA on polyribosomes. The polyribosome-derived CAT RNA, which contained the EMCV UTR, was translated in vitro in a cap-independent fashion as well. Use of the EMCV UTR significantly enhanced the vaccinia/T7 hybrid expression system as it resulted in a 4- to 7-fold increase in total CAT activity. A further approximately 2-fold improvement was achieved by incubating the cells in hypertonic medium, which favors the translation of uncapped picornavirus RNA over cellular mRNAs. With this newly modified expression system, CAT was the predominant protein synthesized by infected cells and within 24 hr accounted for greater than 10% of the total cell protein.
机译:指导痘病毒T7 RNA聚合酶合成的重组牛痘病毒为在哺乳动物细胞中表达受T7启动子调控的基因提供了基础。感染后24小时,T7转录本占细胞质RNA总量的30%,但大部分没有上限。为了提高无盖RNA的翻译性,将脑心肌炎病毒(EMCV)非翻译区(UTR)插入T7启动子和氯霉素乙酰转移酶(CAT)基因之间。网织红细胞提取物的实验表明,EMVC UTR赋予T7 RNA聚合酶体外合成的CAT RNA有效且不依赖于帽的翻译性。在感染含有T7启动子调节的CAT基因的重组牛痘病毒的细胞中,EMCV UTR增加了多核糖体上CAT RNA的量。含有EMCV UTR的多核糖体来源的CAT RNA也以不依赖帽的方式在体外翻译。 EMCV UTR的使用显着增强了牛痘/ T7杂合表达系统,因为它导致总CAT活性提高了4至7倍。通过在高渗培养基中孵育细胞,可实现约2倍的进一步改善,这有利于将未封端的小核糖核酸病毒RNA翻译为优于细胞mRNA。借助这种新修饰的表达系统,CAT是感染细胞合成的主要蛋白质,并且在24小时内占细胞总蛋白质的10%以上。

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