Molecular chaperones, folding catalysts, and the recovery of active recombinant proteins from E-coli - To fold or to refold

被引:182
作者
Thomas, JG [1 ]
Ayling, A [1 ]
Baneyx, F [1 ]
机构
[1] UNIV WASHINGTON, DEPT CHEM ENGN, SEATTLE, WA 98195 USA
基金
美国国家科学基金会;
关键词
protein folding; protein refolding; protein aggregation; inclusion body; heat-shock protein; DnaK; GroEL; foldase; protein disulfide isomerase; peptidyl-prolyl cis/trans isomerase;
D O I
10.1007/BF02785589
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The high-level expression of recombinant gene products in the gramnegative bacterium Escherichia coli often results in the misfolding of the protein of interest and its subsequent degradation by cellular proteases or its deposition into biologically inactive aggregates known as inclusion bodies. It has recently become clear that in vivo protein folding is an energy-dependent process mediated by two classes of folding modulators. Molecular chaperones, such as the DnaK-DnaJ-GrpE and GroEL-GroES systems, suppress off-pathway aggregation reactions and facilitate proper folding through ATP-coordinated cycles of binding and release of folding intermediates. On the other hand, folding catalysts (foldases) accelerate rate-limiting steps along the protein folding pathway such as the cis/trans isomerization of peptidyl-prolyl bonds and the formation and reshuffling of disulfide bridges. Manipulating the cytoplasmic folding environment by increasing the intracellular concentration of all or specific folding modulators, or by inactivating genes encoding these proteins, holds great promise in facilitating the production and purification of heterologous proteins. Purified folding modulators and artificial systems that mimic their mode of action have also proven useful in improving the in vitro refolding yields of chemically denatured polypeptides. This review examines the usefulness and limitations of molecular chaperones and folding catalysts in both in vivo and in vitro folding processes.
引用
收藏
页码:197 / 238
页数:42
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