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Truncated GroEL monomer has the ability to promote folding of rhodanese without GroES and ATP
[摘要]

Similar to chaperonins from other sources, intact chaperonin from Escherichia coli (GroEL) exists as a tetradecamer, and the ability to promote folding of other proteins has been considered to be dependent on this oligomeric structure. However, the peptide fragments of GroEL of molecular size 34–50 kDa, which are produced by limited proteolysis of monomeric GroEL and are unable to assemble into an oligomer, retain the ability to promote folding of rhodanese even though the yield of productive folding is lower than the intact GroEL/GroES/ATP system. This promotion by truncated GroEL obeys rapid kinetics and does not require GroES and ATP.

[发布日期]  [发布机构] 
[效力级别]  [学科分类] 生物化学/生物物理
[关键词] Chaperonin;GroEL;GroES;Protein folding;Rhodanese;GroELm;monomer of GroEL molecule;GroEL14;tetradecamer of GroEL molecules;rhodanese;thiosulfate sulfurtransferase;SDS;sodium dodecylsulfate [时效性] 
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