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Engineering the Protein Folding Landscape in Gram-Negative Bacteria

机译:改造革兰氏阴性细菌中的蛋白质折叠景观

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Gram-negative bacteria,especially Escherichia coli,are often the preferred hosts for recombinant protein production because of their fast doubling times,ability to grow to high cell density,propensity for high recombinant protein titers and straightforward protein purification techniques.The utility of simple bacteria in such studies continues to improve as a result of an ever-increasing body of knowledge regarding their native protein biogenesis machinery.From translation on the ribosome to interaction with cytosolic accessory factors to transport across the inner membrane into the periplasmic space,cellular proteins interact with many different types of cellular machinery and each interaction can have a profound effect on the protein folding process.This review addresses key aspects of cellular protein folding,solubility and expression in E.coli with particular focus on the elegant biological machinery that orchestrates the transition from nascent polypeptide to folded,functional protein.Specifically highlighted are a variety of different techniques to intentionally alter the folding environment of the cell as a means to understand and engineer intracellular protein folding and stability.
机译:革兰氏阴性细菌(尤其是大肠杆菌)通常是重组蛋白生产的首选宿主,因为它们的倍增时间快,能够生长到高细胞密度,具有高重组蛋白滴度的倾向和简单的蛋白纯化技术。简单细菌的实用性在此类研究中,由于其天然蛋白质生物合成机制的知识不断增长,因此不断得到改善。从核糖体上的翻译到与胞质辅助因子的相互作用,再通过内膜转运到周质空间,细胞蛋白与许多不同类型的细胞机制以及每种相互作用都可以对蛋白质折叠过程产生深远的影响。本文综述了细胞蛋白质折叠,在大肠杆菌中的溶解性和表达的关键方面,特别着重于精心策划的生物机械转变。新生多肽折叠,功能亲tein。特别强调的是各种有意改变细胞折叠环境的不同技术,作为了解和工程化细胞内蛋白质折叠和稳定性的一种手段。

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