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首页> 外文期刊>Nucleic acids research >Gene expression: chemical synthesis of E. coli ribosome binding sites and their use in directing the expression of mammalian proteins in bacteria
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Gene expression: chemical synthesis of E. coli ribosome binding sites and their use in directing the expression of mammalian proteins in bacteria

机译:基因表达:大肠杆菌核糖体结合位点的化学合成及其在指导哺乳动物蛋白在细菌中表达的用途

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Mammalian genes, when inserted into bacterial plasmid or phage DNAs, will not be expressed into the corresponding specific proteins in E. coli unless proper initiation signals required for recognition by E. coli ribosomes are provided. We have studied these signals and chemically synthesized two DNA duplexes each containing different initiation signals. These have been inserted in front of the Simian virus 40 (SV40) small tumor antigen gene (SV40 t gene) at varying distances from the ATG initiation codon prior to its cloning into pBR322 plasmid DNA. Plasmid containing clones carrying either of these two synthetic ribosome binding sites (RBS) at varying distances from the SV40 t gene all produced a 17K protein identical to authentic t antigen by immunologic, electrophoretic and proteolytic digestion analyses. This provides a novel method to ensure the specific expression of any contiguous mammalian gene to be cloned into bacteria, and also a unique in vivo method for studying the structure-function (efficiency) relationship of RBS with specific base changes.
机译:当将哺乳动物基因插入细菌质粒或噬菌体DNA中时,除非提供被大肠杆菌核糖体识别所需的正确启动信号,否则它们不会在大肠杆菌中相应的特定蛋白中表达。我们已经研究了这些信号并化学合成了两个DNA双链体,每个双链体包含不同的起始信号。这些已被插入猿猴病毒40(SV40)小肿瘤抗原基因(SV40 t基因)的前面,与ATG起始密码子的距离不同,然后再克隆入pBR322质粒DNA。通过免疫,电泳和蛋白水解消化分析,包含与这两个合成核糖体结合位点(RBS)中的一个位于距SV40 t基因不同距离的克隆的质粒均产生了与真实t抗原相同的17K蛋白。这提供了一种新颖的方法来确保要克隆到细菌中的任何连续哺乳动物基因的特异性表达,并且提供了一种独特的体内方法来研究RBS与特定碱基变化的结构-功能(效率)关系。

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