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Hyper-production of large proteins of spider dragline silk MaSp2 by Escherichia coli via synthetic biology approach

机译:大肠杆菌通过合成生物学方法超量生产蜘蛛牵引丝蚕丝MaSp2的大蛋白

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Spider dragline silk exhibits excellent mechanical properties that make it a promising protein polymer for industrial and biomedical applications. Since farming spiders is not feasible due to their highly territorial nature, recombinant production of dragline silk proteins in a foreign host has received great attention. However, their production titer remains low, because efficient expression of very large, highly repetitive, glycine-rich silk proteins is a challenge. This work demonstrates the design and high-level production of large dragline silk proteins of major ampullate spidroin 2 (MaSp2) in Escherichia coli by synthetic biology approach. The expression levels of MaSp2 with molecular weight of 28.3-256.5 kDa were significantly elevated by down-shifting the induction temperature. The beneficial effect was found to be at least partially attributed to the improved plasmid maintenance in the recombinant cells. Combination of induction temperature downshift with the glycyl-tRNA pool increase in E. coli led to enhanced biosynthesis of glycine-rich silk proteins. A high production titer of about 3.6 gl(-1) of a 201.6-kDa MaSp2 protein was achieved in a 3-L fed-batch bioreactor, which was the highest as reported. The developed approach may be useful to cost-effective large-scale production of silk proteins. (C) 2016 Elsevier Ltd. All rights reserved.
机译:蜘蛛拉铲丝具有出色的机械性能,使其成为工业和生物医学应用中很有希望的蛋白质聚合物。由于耕种蜘蛛由于其高度的地域性而不可行,因此在国外宿主中拉铲丝蛋白的重组生产受到了极大的关注。但是,它们的生产效价仍然很低,因为有效表达非常大的,高度重复的,富含甘氨酸的蚕丝蛋白是一个挑战。这项工作证明了通过合成生物学方法在大肠杆菌中设计和大规模生产了主要壶腹spidroin 2(MaSp2)的大型拉丝绳丝蛋白。下移诱导温度可显着提高分子量为28.3-256.5 kDa的MaSp2的表达水平。发现该有益效果至少部分归因于重组细胞中改善的质粒维持。大肠杆菌中诱导温度下降和甘氨酰-tRNA库增加的结合导致富含甘氨酸的丝蛋白的生物合成增强。在3升补料分批生物反应器中实现了201.6-kDa MaSp2蛋白的约3.6 gl(-1)的高产量效价,这是报道的最高值。所开发的方法可能对经济有效地大规模生产丝蛋白有用。 (C)2016 Elsevier Ltd.保留所有权利。

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