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Engineering the flagellar type III secretion system: improving capacity for secretion of recombinant protein

机译:设计鞭毛III型分泌系统:提高重组蛋白的分泌能力

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Many valuable biopharmaceutical and biotechnological proteins have been produced in Escherichia coli, however these proteins are almost exclusively localised in the cytoplasm or periplasm. This presents challenges for purification, i.e. the removal of contaminating cellular constituents. One solution is secretion directly into the surrounding media, which we achieved via?the ‘hijack’ of the flagellar type III secretion system (FT3SS). Ordinarily flagellar subunits are exported through the centre of the growing flagellum, before assembly at the tip. However, we exploit the fact that in the absence of certain flagellar components (e.g. cap proteins), monomeric flagellar proteins are secreted into the supernatant. We report the creation and iterative improvement of an?E. coli?strain, by means of a modified FT3SS and a modular plasmid system, for secretion of exemplar proteins.?We show that removal of the flagellin and HAP proteins (FliC and FlgKL) resulted in an optimal prototype. We next developed a high-throughput enzymatic secretion assay based on cutinase. This indicated that removal of the?flagellar motor proteins, motAB (to reduce metabolic burden) and protein degradation machinery, clpX (to boost FT3SS levels intracellularly), result in high capacity secretion.?We also show that a secretion construct comprising the 5′UTR and first 47 amino acidsof FliC from?E. coli?(but no 3′UTR) achieved the highest levels of secretion.?Upon combination, we show a 24-fold improvement in secretion of a heterologous (cutinase) enzyme over the original strain.?This improved strain could export a range of pharmaceutically relevant heterologous proteins [hGH, TrxA, ScFv (CH2)], achieving secreted yields of up to 0.29?mg?L?1, in low cell density culture. We have engineered an E. coli which secretes a range of recombinant proteins, through the FT3SS, to the extracellular media. With further developments, including cell culture process strategies, we envision further improvement to the secreted titre of recombinant protein, with the potential application for protein production for biotechnological purposes.
机译:在大肠杆菌中已经产生了许多有价值的生物制药和生物技术蛋白质,但是这些蛋白质几乎完全位于细胞质或周质中。这提出了纯化的挑战,即去除污染的细胞成分。一种解决方案是直接分泌到周围的介质中,这是通过鞭毛III型分泌系统(FT3SS)的“劫持”实现的。通常,鞭毛亚基在尖端组装之前通过生长的鞭毛的中心输出。但是,我们利用以下事实:在缺乏某些鞭毛成分(例如帽蛋白)的情况下,单体鞭毛蛋白会分泌到上清液中。我们报告了anE的创建和迭代改进。大肠杆菌菌株,通过修饰的FT3SS和模块化质粒系统,用于分泌示例性蛋白质。我们显示,去除鞭毛蛋白和HAP蛋白(FliC和FlgKL)可产生最佳原型。接下来,我们基于角质酶开发了一种高通量的酶促分泌测定法。这表明去除鞭毛运动蛋白motAB(以减少代谢负担)和蛋白降解机制clpX(以提高细胞内FT3SS水平)可导致高容量分泌。我们还显示了包含5'的分泌构建体UTR和FliC的前47个氨基酸。大肠埃希氏菌(但没有3'UTR)达到最高的分泌水平。结合后,我们发现异源(角质酶)酶的分泌比原始菌株提高了24倍。药学上相关的异源蛋白质[hGH,TrxA,ScFv(CH2)],在低细胞密度培养中,分泌的产量最高可达0.29?mg?L?1。我们设计了一种通过FT3SS向细胞外培养基分泌一系列重组蛋白的大肠杆菌。随着包括细胞培养过程策略在内的进一步发展,我们预见了重组蛋白分泌滴度的进一步提高,并有望用于生物技术目的生产蛋白。

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