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首页> 外文期刊>Archives of Razi Institute >FUSION OF CLOSTRIDIUM PERFRINGENS TYPE D AND B EPSILON AND BETA TOXIN GENES AND IT’S CLONING IN E. COLI
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FUSION OF CLOSTRIDIUM PERFRINGENS TYPE D AND B EPSILON AND BETA TOXIN GENES AND IT’S CLONING IN E. COLI

机译:D.和B型环孢梭菌ε和BETA毒素基因的融合及其在大肠杆菌中的克隆

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Designing and producing a proper fusion construction is the most important problem of producing large quantities of a properly folded functional protein. This construction should have all necessary components of a real gene. A good designed fusion gene construction could be cloned into a good and suitable host.Clostridium perfringens is an important pathogen of humans and livestock and produces numerous toxins including epsilon and beta which are responsible for severe diseases. In the present study a new construction containing Clostridium perfringens type D epsilon toxin gene and type B beta toxin gene was designed. At the first step two pairs of primers were used for these genes amplification. At the next step epsilon forward and beta reveres primers were used to produce a chimeric gene containing amplified partial cds of etxD and partial cds of cpbB which are linked together by the AEAAAKEAAAKA fragment as a small linker. The method was based on fusion PCR and using of Pfu DNA polymerase, which has a proofreading activity. The fusion gene inserted into pJET1.2blunt and cloned into E. coli strain TOP10. Based on the latest information, this is the first design and cloning of epsilon-beta fusion gene and also this is the first time that PCR fusion strategy is used for Clostriadial gene fusion, which could be used for development of a recombinant epsilon-beta fusion protein vaccine. This construction also could serve as a model for development and production of novel fusion protein for other potential proteins and toxins.
机译:设计和生产合适的融合结构是生产大量正确折叠的功能蛋白的最重要问题。这种构建应具有真实基因的所有必需成分。可以将设计良好的融合基因构建体克隆到合适的宿主中。产气荚膜梭状芽胞杆菌是人和牲畜的重要病原体,会产生多种毒素,包括ε和β,这些毒素可导致严重疾病。在本研究中,设计了一种新的含有产气荚膜梭菌D型ε毒素基因和B型β毒素基因的构建体。第一步,将两对引物用于这些基因扩增。在下一步中,使用ε正向和β反向引物来产生嵌合基因,该基因包含etxD的扩增的部分cd和cpbB的部分cd,它们通过作为小接头的EAEAAKEAKAKA片段连接在一起。该方法基于融合PCR并使用具有校对活性的Pfu DNA聚合酶。将融合基因插入pJET1.2blunt,并克隆到大肠杆菌TOP10菌株中。基于最新信息,这是ε-β融合基因的首次设计和克隆,也是首次将PCR融合策略用于梭菌基因融合,可用于开发重组ε-β融合体蛋白疫苗。这种构建也可以用作开发和生产用于其他潜在蛋白质和毒素的新型融合蛋白的模型。

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