Refolding Techniques for Recovering Biologically Active Recombinant Proteins from Inclusion Bodies

Методы рефолдинга для получения биологически активных рекомбинантных белков из телец включения
Hiroshi Yamaguchi, Masaya Miyazaki
2014-02-20

chemical additivesinclusion bodiesmicrofluidic laminar flowprotein refoldingrecombinant proteins
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.
1
Bacterial overexpression of recombinant proteins, particularly in Escherichia coli, commonly produces inclusion bodies containing proteins with non-native conformations.
2
Chemical additives and microfluidic laminar-flow techniques are highlighted as approaches for more efficient recovery of active proteins from inclusion bodies.
3
Conventional dialysis and dilution refolding methods are time-consuming, often yield little active protein, and typically require trial-and-error optimization.
4
Inclusion bodies contain relatively pure and intact recombinant proteins, making refolding an important route for recovering biologically active proteins.
5
Recent refolding strategies primarily seek to suppress protein aggregation during refolding, including approaches using chemical additives and laminar flow in microfluidic chips.

recombinant proteins aggregated in bacterial inclusion bodies

refolding techniques and strategies for efficiently recovering biologically active proteins while reducing aggregation during refolding

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2014-02-20
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Hiroshi Yamaguchi
Masaya Miyazaki
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