Publication | Open Access
Stabilization of <i>Taq</i> DNA Polymerase at High Temperature by Protein Folding Pathways From a Hyperthermophilic Archaeon, <i>Pyrococcus furiosus</i>
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Citations
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References
2005
Year
Protein AssemblyMolecular BiologyAnalytical UltracentrifugationProtein RefoldingNucleic Acid ChemistryProtein FoldingBioenergeticsChaperonesHyperthermophilic ArchaeonStructure-function Enzyme KineticsBiochemistryProtein Folding PathwaysDna ReplicationP. FuriosusPassive Chaperones ShspNatural SciencesEnzyme CatalysisPyrococcus FuriosusMedicineHigh Temperature
Pyrococcus furiosus, a hyperthermophilic archaeon growing optimally at 100 degrees C, encodes three protein chaperones, a small heat shock protein (sHsp), a prefoldin (Pfd), and a chaperonin (Cpn). In this study, we report that the passive chaperones sHsp and Pfd from P. furiosus can boost the protein refolding activity of the ATP-dependent Cpn from the same hyperthermophile. The thermo-stability of Taq polymerase was significantly improved by combinations of P. furiosus chaperones, showing ongoing protein folding activity at elevated temperatures and during thermal cycling. Based on these results, we propose that the protein folding apparatus in the hyperthermophilic archaeon, P. furiosus can be utilized to enhance the durability and cost effectiveness of high temperature biocatalysts.
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