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首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >Microbial production of amino acid-modified spider dragline silk protein with intensively improved mechanical properties
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Microbial production of amino acid-modified spider dragline silk protein with intensively improved mechanical properties

机译:微生物生产的氨基酸修饰蜘蛛拉丝蚕丝蛋白,其机械性能得到极大改善

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摘要

Spider dragline silk is a remarkably strong fiber with impressive mechanical properties, which were thought to result from the specific structures of the underlying proteins and their molecular size. In this study, silk protein 11R26 from the dragline silk protein of Nephila clavipes was used to analyze the potential effects of the special amino acids on the function of 11R26. Three protein derivatives, ZF4, ZF5, and ZF6, were obtained by site-directed mutagenesis, based on the sequence of 11R26, and among these derivatives, serine was replaced with cysteine, isoleucine, and arginine, respectively. After these were expressed and purified, the mechanical performance of the fibers derived from the four proteins was tested. Both hardness and average elastic modulus of ZF4 fiber increased 2.2 times compared with those of 11R26. The number of disulfide bonds in ZF4 protein was 4.67 times that of 11R26, which implied that disulfide bonds outside the poly-Ala region affect the mechanical properties of spider silk more efficiently. The results indicated that the mechanical performances of spider silk proteins with small molecular size can be enhanced by modification of the amino acids residues. Our research not only has shown the feasibility of large-scale production of spider silk proteins but also provides valuable information for protein rational design.
机译:蜘蛛拉铲丝是一种非常坚固的纤维,具有令人印象深刻的机械性能,这被认为是由潜在蛋白质的特定结构及其分子大小导致的。在这项研究中,使用了来自Nephila clavipes的拉丝绳蚕丝蛋白的蚕丝蛋白11R26来分析特殊氨基酸对11R26功能的潜在影响。基于11R26的序列,通过定点诱变获得了3种蛋白质衍生物ZF4,ZF5和ZF6,在这些衍生物中,丝氨酸分别被半胱氨酸,异亮氨酸和精氨酸取代。将它们表达并纯化后,测试了衍生自四种蛋白质的纤维的机械性能。与11R26相比,ZF4纤维的硬度和平均弹性模量均提高了2.2倍。 ZF4蛋白中的二硫键数量是11R26的4.67倍,这表明在聚丙氨酸区域之外的二硫键会更有效地影响蜘蛛丝的机械性能。结果表明,通过修饰氨基酸残基可以提高小分子蜘蛛丝蛋白的力学性能。我们的研究不仅显示了蜘蛛丝蛋白大规模生产的可行性,而且为蛋白合理设计提供了有价值的信息。

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