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Column-Free Purification Methods for Recombinant Proteins Using Self-Cleaving Aggregating Tags

机译:使用自切割聚集标签的重组蛋白的无柱纯化方法

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摘要

Conventional column chromatography processes to purify recombinant proteins are associated with high production costs and slow volumetric throughput at both laboratory and large scale. Non-chromatographic purifications based on selective aggregating tags have the potential to reduce costs with acceptable protein yields. A significant drawback, however, is that current proteolytic approaches for post-purification tag removal after are expensive and non-scalable. To address this problem, we have developed two non-chromatographic purification strategies that use either the elastin-like polypeptide (ELP) tag or the β-roll tag (BRT17) in combination with an engineered split intein for tag removal. The use of the split intein eliminates premature cleavage during expression and provides controlled cleavage under mild conditions after purification. These self-cleaving aggregating tags were used to efficiently purify β-lactamase (β-lac), super-folder green fluorescent protein (sfGFP), streptokinase (SK) and maltose binding protein (MBP), resulting in increased yields compared to previous ELP and BRT17-based methods. Observed yields of purified targets for both systems typically ranged from approximately 200 to 300 micrograms per milliliter of cell culture, while overall recoveries ranged from 10 to 85 percent and were highly dependent on the target protein.
机译:纯化重组蛋白的常规柱色谱方法与高生产成本以及实验室和大规模生产中缓慢的体积通量相关。基于选择性聚集标签的非色谱纯化有可能以可接受的蛋白质产量降低成本。然而,一个显着的缺点是,目前用于去除纯化后标签的蛋白水解方法昂贵且不可扩展。为了解决这个问题,我们开发了两种非色谱纯化策略,它们使用弹性蛋白样多肽(ELP)标签或β-roll标签(BRT17)结合工程改造的内含肽来去除标签。分裂的内含肽的使用消除了表达过程中的过早裂解,并在纯化后在温和条件下提供了受控的裂解。这些自裂解的聚集标签用于有效纯化β-内酰胺酶(β-lac),超文件夹绿色荧光蛋白(sfGFP),链激酶(SK)和麦芽糖结合蛋白(MBP),与以前的ELP相比,产量提高和基于BRT17的方法。两种系统的纯化靶标观察到的产量通常在每毫升细胞培养物中约200至300微克,而总回收率在10%至85%之间,并且高度依赖于靶蛋白。

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