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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >A vector-enzymatic DNA fragment amplification-expression technology for construction of artificial, concatemeric DNA, RNA and proteins for novel biomaterials, biomedical and industrial applications
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A vector-enzymatic DNA fragment amplification-expression technology for construction of artificial, concatemeric DNA, RNA and proteins for novel biomaterials, biomedical and industrial applications

机译:用于构建人工,加性DNA,RNA和蛋白质的载体酶DNA片段扩增表达技术,用于新型生物材料,生物医学和工业应用

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摘要

A DNA fragment amplification/expression technology for the production of new generation biomaterials for scientific, industrial and biomedical applications is described. The technology enables the formation of artificial Open Reading Frames (ORFs) encoding concatemeric RNAs and proteins. It recruits the Type IIS SapI restriction endonuclease (REase) for an assembling of DNA fragments in an ordered head-to-tail-orientation. The technology employs a vector-enzymatic system, dedicated to the expression of newly formed, concatemeric ORFs from strong promoters. Four vector series were constructed to suit specialised needs. As a proof of concept, a model amplification of a 7-amino acid (aa) epitope from the S protein of HBV virus was performed, resulting in 500 copies of the epitope-coding DNA segment, consecutively linked and expressed in Escherichia coli (E. coli). Furthermore, a peptide with potential pro-regenerative properties (derived from an angiopoietin-related growth factor) was designed. Its aa sequence was back-translated, codon usage optimized and synthesized as a continuous ORF 10-mer. The 10-mer was cloned into the amplification vector, enabling the N-terminal fusion and multiplication of the encoded protein with MalE signal sequence. The obtained genes were expressed, and the proteins were purified. Conclusively, we show that the proteins are neither cytotoxic nor immunogenic and they have a very low allergic potential.
机译:描述了用于生产新一代生物材料的DNA片段扩增/表达技术。该技术使得能够形成编码阶层RNA和蛋白质的人工开放阅读框(ORF)。它招募IIS型SAPI限制性内切核酸酶(易于释放)以在有序的头部到尾型方向上组装DNA片段。该技术采用载体酶系统,致力于来自强促进剂的新形成的,上疗法的表达。建造了四种矢量系列以满足专业需求。作为概念证据,进行来自HBV病毒的S蛋白的7-氨基酸(AA)表位的模型扩增,导致表位编码DNA链段的500份,在大肠杆菌中连续连接并表达(E. 。COLI)。此外,设计了具有潜在的潜水性质的肽(衍生自血管素相关的生长因子)。它的AA序列被回转换,密码子使用优化和合成为连续的ORF 10-MER。将10-MER克隆到扩增载体中,使N-末端融合和编码蛋白质的倍增与雄性信号序列。表达所得基因,纯化蛋白质。结论,我们表明蛋白质既不是细胞毒性也不是免疫原性,它们具有非常低的过敏潜力。

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