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Efficient soluble expression of disulfide bonded proteins in the cytoplasm of Escherichia coli in fed-batch fermentations on chemically defined minimal media

机译:在化学限定的基本培养基上分批补料发酵中大肠杆菌胞质中二硫键结合蛋白的有效可溶性表达

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Background The production of recombinant proteins containing disulfide bonds in Escherichia coli is challenging. In most cases the protein of interest needs to be either targeted to the oxidizing periplasm or expressed in the cytoplasm in the form of inclusion bodies, then solubilized and re-folded in vitro. Both of these approaches have limitations. Previously we showed that soluble expression of disulfide bonded proteins in the cytoplasm of E. coli is possible at shake flask scale with a system, known as CyDisCo, which is based on co-expression of a protein of interest along with a sulfhydryl oxidase and a disulfide bond isomerase. With CyDisCo it is possible to produce disulfide bonded proteins in the presence of intact reducing pathways in the cytoplasm. Results Here we scaled up production of four disulfide bonded proteins to stirred tank bioreactors and achieved high cell densities and protein yields in glucose fed-batch fermentations, using an E. coli strain (BW25113) with the cytoplasmic reducing pathways intact. Even without process optimization production of purified human single chain IgA1 antibody fragment reached 139?mg/L and hen avidin 71?mg/L, while purified yields of human growth hormone 1 and interleukin 6 were around 1?g/L. Preliminary results show that human growth hormone 1 was also efficiently produced in fermentations of W3110 strain and when glucose was replaced with glycerol as the carbon source. Conclusions Our results show for the first time that efficient production of high yields of soluble disulfide bonded proteins in the cytoplasm of E. coli with the reducing pathways intact is feasible to scale-up to bioreactor cultivations on chemically defined minimal media.
机译:背景技术在大肠杆菌中生产包含二硫键的重组蛋白是具有挑战性的。在大多数情况下,目标蛋白需要靶向氧化周质或以包涵体形式在细胞质中表达,然后在体外溶解并重新折叠。这两种方法都有局限性。以前,我们表明,使用称为CyDisCo的系统,在摇瓶规模下,二硫键结合蛋白在大肠杆菌细胞质中的可溶表达是可能的,该系统基于目标蛋白与巯基氧化酶和α-淀粉酶的共表达二硫键异构酶。使用CyDisCo,有可能在细胞质中存在完整的还原途径时产生二硫键结合的蛋白质。结果在这里,我们使用具有完整细胞质还原途径的大肠杆菌(BW25113),在搅拌罐生物反应器中扩大了四个二硫键结合蛋白的生产,并在葡萄糖补料分批发酵中实现了高细胞密度和蛋白质产量。即使不进行工艺优化,纯化的人单链IgA 1 抗体片段的产量也达到139?mg / L,抗生物素蛋白母蛋白为71?mg / L,而人生长激素1和白介素6的纯化产量约为1克/升。初步结果表明,在W3110菌株的发酵中以及当用甘油作为碳源代替葡萄糖时,人生长激素1也是有效产生的。结论我们的结果首次表明,在大肠杆菌细胞质中以完整的还原途径完整生产高产量的可溶性二硫键结合蛋白,对于在化学上限定的最小培养基上扩大生物反应器的培养规模是可行的。

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