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Refolding Techniques for Recovering Biologically Active Recombinant Proteins from Inclusion Bodies

机译:从包涵体中回收生物活性重组蛋白的复性技术

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摘要

Biologically active proteins are useful for studying the biological functions of genes and for the development of therapeutic drugs and biomaterials in a biotechnology industry. Overexpression of recombinant proteins in bacteria, such as Escherichia coli, often results in the formation of inclusion bodies, which are protein aggregates with non-native conformations. As inclusion bodies contain relatively pure and intact proteins, protein refolding is an important process to obtain active recombinant proteins from inclusion bodies. However, conventional refolding methods, such as dialysis and dilution, are time consuming and, often, recovered yields of active proteins are low, and a trial-and-error process is required to achieve success. Recently, several approaches have been reported to refold these aggregated proteins into an active form. The strategies largely aim at reducing protein aggregation during the refolding procedure. This review focuses on protein refolding techniques using chemical additives and laminar flow in microfluidic chips for the efficient recovery of active proteins from inclusion bodies.
机译:具有生物活性的蛋白质可用于研究基因的生物学功能以及在生物技术行业中开发治疗药物和生物材料。重组蛋白在细菌(如大肠杆菌)中的过表达通常会导致包涵体的形成,包涵体是具有非天然构象的蛋白聚集体。由于包涵体包含相对纯净和完整的蛋白质,因此蛋白质重折叠是从包涵体获得活性重组蛋白的重要过程。但是,常规的重折叠方法(例如透析和稀释)非常耗时,而且活性蛋白的回收率通常很低,并且需要反复试验才能获得成功。最近,已经报道了几种将这些聚集的蛋白质重新折叠成活性形式的方法。这些策略主要旨在减少重新折叠过程中的蛋白质聚集。这篇综述集中在使用化学添加剂和微流控芯片中的层流的蛋白质复性技术上,以从包涵体中有效回收活性蛋白质。

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