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Recombinant protein expression for structural biology in HEK 293F suspension cells: a novel and accessible approach

机译:HEK 293F悬浮细胞中用于结构生物学的重组蛋白表达:一种新颖且容易获得的方法

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摘要

The expression and purification of large amounts of recombinant protein complexes is an essential requirement for structural biology studies. For over two decades, prokaryotic expression systems such as E. coli have dominated the scientific literature over costly and less efficient eukaryotic cell lines. Despite the clear advantage in terms of yields and costs of expressing recombinant proteins in bacteria, the absence of specific co-factors, chaperones and post-translational modifications may cause loss of function, mis-folding and can disrupt protein-protein interactions of certain eukaryotic multi-subunit complexes, surface receptors and secreted proteins. The use of mammalian cell expression systems can address these drawbacks since they provide a eukaryotic expression environment. However, low protein yields and high costs of such methods have until recently limited their use for structural biology. Here we describe a simple and accessible method for expressing and purifying milligram quantities of protein by performing transient transfections of suspension grown HEK (Human Embryonic Kidney) 293 F cells.
机译:大量重组蛋白复合物的表达和纯化是结构生物学研究的基本要求。在过去的二十多年中,原核表达系统(例如大肠杆菌)在昂贵且效率较低的真核细胞系中占据了科学文献的主导地位。尽管在细菌中表达重组蛋白的收率和成本方面具有明显优势,但是缺乏特异性辅因子,分子伴侣和翻译后修饰可能会导致功能丧失,折叠错误并破坏某些真核生物的蛋白相互作用。多亚基复合物,表面受体和分泌蛋白。哺乳动物细胞表达系统的使用可以解决这些缺点,因为它们提供了真核表达环境。然而,直到最近,这种方法的低蛋白产率和高成本一直限制了它们在结构生物学中的用途。在这里,我们描述了通过悬浮培养的HEK(人类胚胎肾脏)293 F细胞的瞬时转染来表达和纯化毫克量蛋白质的一种简单易用的方法。

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