首页> 外文学位 >Development of a codon-optimized Latrodectus hesperus MaSp1 synthetic gene for bacterial protein expression using a seamless cloning strategy.
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Development of a codon-optimized Latrodectus hesperus MaSp1 synthetic gene for bacterial protein expression using a seamless cloning strategy.

机译:使用无缝克隆策略开发用于细菌蛋白表达的密码子优化的阔叶冬菇MaSp1合成基因。

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摘要

Spider silk has outstanding mechanical properties, displaying high tensile strength and extensibility. The unique combination of strength and great extensibility make it one of the toughest materials in the world. Of the seven different spider silks, dragline silk, the lifeline silk of the spider, represents one of the most renowned fiber types that has extraordinary properties. As a result, many labs across the globe are racing to manufacture synthetic dragline silk fibers. With the production of synthetic dragline silk fibers, there are unlimited commercial applications. In this study, we developed several codon-optimized MaSp1 minifibroin constructs for recombinant protein expression in bacteria. These recombinant MaSp1 minifibroin constructs were engineered to contain the N-terminal domain (NTD), different copies of internal block repeats (ranging from 2 to 64 copies of 35 amino acid blocks), and the C-terminal domain (CTD). The NTD and CTDs were derived from the natural cDNA sequences of black widow spiders, while the internal block repeats were generated from synthetic DNA fragments that were codon-optimized for expression in Escherichia coli. Different numbers of internal block repeats were created using a specialized seamless cloning strategy. By applying this seamless cloning strategy, we successfully multimerized MaSp1 block repeats that approach the natural fibroin size. Moreover, through the construction of a customized NTD-CTD spidroin construct, multimerized block repeats from any fibroin can be rapidly inserted to facilitate minifibroin protein expression in bacteria. Overall, this strategy as well as the created vectors, should help advance the silk community in the production of synthetic silk fibers that have properties that more closely resemble natural fibers.
机译:蜘蛛丝具有出色的机械性能,显示出高拉伸强度和可扩展性。强度和可扩展性的独特结合使其成为世界上最坚韧的材料之一。在七种不同的蜘蛛丝中,拉丝线丝绸(蜘蛛的生命线)代表着具有非凡性能的最著名的纤维类型之一。结果,全球许多实验室都在竞相生产人造拉丝蚕丝纤维。随着合成拉铲丝纤维的生产,商业应用无限。在这项研究中,我们开发了几种密码子优化的MaSp1微丝蛋白构建体,用于细菌中的重组蛋白表达。这些重组的MaSp1微丝蛋白构建体经过工程改造,以包含N末端结构域(NTD),内部嵌段重复序列的不同副本(从35个氨基酸区块的2到64个副本不等)以及C末端结构域(CTD)。 NTD和CTD源自黑寡妇蜘蛛的天然cDNA序列,而内部密码子重复序列则是由合成的DNA片段生成的,这些片段经密码子优化后可在大肠杆菌中表达。使用专门的无缝克隆策略创建了不同数量的内部嵌段重复序列。通过应用这种无缝克隆策略,我们成功地将接近自然丝蛋白大小的MaSp1重复序列进行了多聚化。此外,通过构建定制的NTD-CTD spidroin构建体,可以快速插入来自任何纤维蛋白的多聚体重复序列,以促进微纤维蛋白在细菌中的表达。总体而言,该策略以及所创建的载体应有助于在合成蚕丝纤维的生产中促进蚕丝群落,合成蚕丝纤维的性能与天然纤维更相似。

著录项

  • 作者

    Mendoza, J Alexander Hoang.;

  • 作者单位

    University of the Pacific.;

  • 授予单位 University of the Pacific.;
  • 学科 Biochemistry.;Entomology.;Molecular biology.;Cellular biology.
  • 学位 M.S.
  • 年度 2015
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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