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Thermodynamic and kinetic stability of a large multi-domain enzyme from the hyperthermophile Aeropyrum pernix
- Publication Year :
- 2010
-
Abstract
- The multi-domain enzyme isocitrate dehydrogenase from the hyperthermophile Aeropyrum pernix was studied by denaturant-induced unfolding. At pH 7.5, changes in circular dichroism ellipticity and intrinsic fluorescence showed a complex unfolding transition, whereas at pH 3.0, an apparently two-state and highly reversible unfolding occurred. Analytical ultracentrifugation revealed the dissociation from dimer to monomer at pH 3.0. The thermodynamic and kinetic stability were studied at pH 3.0 to explore the role of inter-domain interactions independently of inter-subunit interplay on the wild type and R211M, a mutant where a seven-membered inter-domain ionic network has been disrupted. The unfolding and folding transitions occurred at slightly different denaturant concentrations even after prolonged equilibration time. The difference between the folding and the unfolding profiles was decreased in the mutant R211M. The apparent Gibbs free energy decreased approximately 2 kcal/mol and the unfolding rate increased 4.3-fold in the mutant protein, corresponding to a decrease in activation free energy of unfolding of 0.86 kcal/mol. These results suggest that the inter-domain ionic network might be responsible for additional stabilization through a significant kinetic barrier in the unfolding pathway that could also explain the larger difference observed between the folding and unfolding transitions of the wild type.
- Subjects :
- Circular dichroism
Protein Folding
Hot Temperature
Aeropyrum
Dimer
Archaeal Proteins
Microbiology
multi-domain protein
chemistry.chemical_compound
symbols.namesake
Mutant protein
Enzyme Stability
Aeropyrum pernix
Urea
Protein Structure, Quaternary
hyperthermophiles
biology
ionic networks
isocitrate dehydrogenase
kinetic stability
protein stability
thermodynamic stability
Chemistry
General Medicine
Hydrogen-Ion Concentration
biology.organism_classification
Hyperthermophile
Recombinant Proteins
Gibbs free energy
Protein Structure, Tertiary
Crystallography
Kinetics
Amino Acid Substitution
symbols
Mutagenesis, Site-Directed
Unfolded Protein Response
Molecular Medicine
Thermodynamics
Chemical stability
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....89864d5caeb379cd27fa658dafaa71ae