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Molecular Cloning of a New Bi-Functional Fusion Protein of Clostridium perfringens Type A Alpha and Clostridium septicum Alpha Toxin Genes in E. coli

机译:梭菌的新双官能融合蛋白的分子克隆Perfringens在大肠杆菌中造成α和梭菌血小录α毒素基因

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Background: A synthetic construct bi-functional protein fusion includes two protein domains, or proteins bind by a fragment. The synthetic construct is designed to achieve better characterize and new functionality. Therefore, having proper cells is essential for cloning fusion genes. Clostridium perfringens type A produces the alpha-toxin and can cause gas gangrene and gastrointestinal diseases. C. septicum produces the alpha-toxin and can cause non-traumatic and traumatic gas gangrene. Objectives: The current study aimed to investigate molecular cloning of a new bi-functional fusion protein of C. perfringens alpha (cpa) and C. septicum alpha (csa) toxin genes in E. coli TOP10. In silico analysis was used for the chimeric fusion protein structural prediction. Methods: To produce chimeric fusion protein, the alpha-alpha (α-α) fusion gene was designed according to nucleotide sequences of cpa (KY584046.1) and csa (JN793989.2) genes. Tertiary structural prediction and validation of the fusion protein were determined by online software. In the new synthetic construction, α-α fusion protein genes are bind via the linker AEAAAKEAAAKA. The linker was introduced between the two domains by fusion PCR. The synthetic fusion gene was cloned into the pUC57cloning vector and then transferred into the host cell. Results: Analysis of the chimeric protein fusion is showed using the I-TASSER server as C-score equal to -2.68 as well as Rampage software in order to confirm the geometrical model as a natural like protein. Also, 1.0% agarose gel electrophoresis of fusion PCR product and sequencing analysis revealed a DNA fragment length of 2346 bp. Screening gel electrophoresis showed 996 bp length, which the designed linker was contained in it. Gel electrophoresis of extracted and purified recombinant plasmid (pUC57/αα) showed that a pUC57/αα of 5056 bp. The digested recombinant pUC57/αα showed one 2.3 kb (our fusion gene) band and one 2.7 kb (pUC57) band. Conclusions: This study presented a new approach for the fusion of cpa and csa genes based on the fusion PCR strategy. According to the latest information, this is the first time that α-α fusion gene is designed and cloned into a suitable cloning vector.
机译:背景:合成构建体双官能蛋白融合包括两个蛋白质结构域,或蛋白质由片段结合。合成构造旨在实现更好的表征和新功能。因此,具有适当的细胞对于克隆融合基因是必不可少的。梭菌强度型A型产生α-毒素,可导致燃气生硬化和胃肠疾病。 C.胚内胚胎产生α-毒素,可引起非创伤性和创伤气体Gangrene。目的:目前的研究旨在调查大肠杆菌TOP10中C.流产型α(CPA)和C.Septicumα(CSA)毒素基因的新型双功能融合蛋白的分子克隆。在硅分析中用于嵌合融合蛋白结构预测。方法:为了产生嵌合融合蛋白,根据CPA(KY584046.1)和CSA(JN793989.2)基因的核苷酸序列设计α-α-α-α)融合基因。通过在线软件确定融合蛋白的三级结构预测和验证。在新的合成结构中,α-α融合蛋白基因通过接头AEAAAKEAAKA结合。通过融合PCR在两个域之间引入连接物。将合成融合基因克隆到PUC57克隆载体中,然后转移到宿主细胞中。结果:使用I-Tasser Server作为C-SCATE等于-2.68以及横冲脉搏软件来显示嵌合蛋白质融合的分析,以确认几何模型作为天然蛋白质。此外,融合PCR产物的1.0%琼脂糖凝胶电泳和测序分析显示DNA片段长度为2346bp。筛选凝胶电泳显示出996bp长度,其中设计的连接器包含在其中。提取的和纯化的重组质粒(PUC57 /αα)的凝胶电泳表明,PUC57 /αα为5056bp。消化的重组PUC57 /αα显示了2.3kb(我们的融合基因)带和一个2.7kb(PUC57)带。结论:本研究提出了一种基于融合PCR策略的CPA和CSA基因融合的新方法。根据最新信息,这是第一次将α-α融合基因设计和克隆到合适的克隆载体中。

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