首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Novel and economical purification of recombinant proteins: Intein-mediated protein purification using in vivo polyhydroxybutyrate (PHB) matrix association
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Novel and economical purification of recombinant proteins: Intein-mediated protein purification using in vivo polyhydroxybutyrate (PHB) matrix association

机译:重组蛋白的新型经济纯化方法:使用体内多羟基丁酸酯(PHB)基质缔合的Intein介导的蛋白纯化

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摘要

This work combines two well-established technologies to generate a breakthrough in protein production and purification. The first is the production of polyhydroxybutyrate (PHB) granules in engineered strains of Escherichia coli. The second is a recently developed group of self-cleaving affinity tags based on protein splicing elements known as inteins. By combining these technologies with a PHB-specific binding protein, a self-contained protein expression and purification system has been developed. In this system, the PHB-binding protein effectively acts as an affinity tag for desired product proteins. The tagged product proteins are expressed in E. coli strains that also produce intracellular PHB granules, where they bind to the granules via the PHB-binding tag. The granules and attached proteins can then be easily recovered following cell lysis by simple mechanical means. Once purified, the product protein is self-cleaved from the granules and released into solution in a substantially purified form. This system has been successfully used at laboratory scale to purify several active test proteins at reasonable yield. By allowing the bacterial cells to effectively produce both the affinity resin and tagged target protein, the cost associated with the purification of recombinant proteins could be greatly reduced. It is expected that this combination of improved economics and simplicity will constitute a significant breakthrough in both large-scale production of purified proteins and enzymes and high-throughput proteomics studies of peptide libraries.
机译:这项工作结合了两种成熟的技术,在蛋白质生产和纯化方面取得了突破。首先是在大肠杆菌的工程菌株中生产聚羟基丁酸酯(PHB)颗粒。第二个是最近开发的一组基于蛋白质剪接元件(称为内含蛋白)的自裂解亲和标签。通过将这些技术与PHB特异性结合蛋白相结合,已开发出一种自包含的蛋白表达和纯化系统。在该系统中,PHB结合蛋白有效地充当所需产物蛋白的亲和标签。标记的产物蛋白在大肠杆菌菌株中表达,该菌株还产生细胞内PHB颗粒,在此处它们通过PHB结合标签与颗粒结合。然后可以通过简单的机械方法在细胞裂解后容易地回收颗粒和附着的蛋白质。一旦纯化,产物蛋白质就从颗粒中自切开并以基本上纯化的形式释放到溶液中。该系统已成功用于实验室规模,以合理的产率纯化了几种活性测试蛋白。通过使细菌细胞有效地产生亲和树脂和标记的靶蛋白,可以大大降低与重组蛋白纯化相关的成本。可以预期,这种改进的经济性和简便性的结合将在大规模生产纯化的蛋白质和酶以及肽库的高通量蛋白质组学研究中构成重大突破。

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