Domain II (residues 189-338, M-r = 16 222) of glutamate dehydrogenase from the hyperthermophilic bacterium Thermotoga maritima was used as a model system to study reversible unfolding thermodynamics of this hyperthermostable enzyme. The protein was produced in large quantities in E. coli using a T7 expression system. It was shown that the recombinant domain is monomeric in solution and that it comprises secondary structural elements similar to those observed in the crystal structure of the hexameric enzyme,The recombinant domain is thermostable and undergoes reversible and cooperative thermal unfolding in the pH. range 5.90-8.00 with melting temperatures between 75.1 and 68.0 degrees C, Thermal unfolding of the protein was studied using differential scanning calorimetry and circular dichroism spectroscopy. Both methods yielded comparable values. The analysis revealed an unfolding enthalpy at 70 degrees C of 70.2 +/- 4.0 kcal/lmol and a Delta C-p value of 1.4 +/- 0.3 kcal/mol K, Chemical unfolding of the recombinant domain resulted in m values of 3.36 +/- 0.10 kcal/mol M for unfolding in guanidinium chloride and 1.46 +/- 0.04 kca/mol M in urea. The thermodynamic parameters for thermal and chemical unfolding equilibria indicate that domain II from T. maritima glutamate dehydrogenase is a thermostable protein with a Delta G(max) of 3.70 kcal/mol. However, the thermal and chemical stabilities of the domain are lower than those of the hexameric protein, indicating that interdomain interactions must play a significant role in the stabilization of T.maritima domain II glutamate dehydrogenase.

Thermal unfolding and conformational stability of the recombinant domain II of glutamate dehydrogenase from the hyperthermophile Thermotoga maritima / Consalvi, Valerio; Chiaraluce, Roberta; L., Giangiacomo; Scandurra, Roberto; P., Christova; A., Karshikoff; S., Knappa; R., Ladenstein. - In: PROTEIN ENGINEERING. - ISSN 0269-2139. - 13:7(2000), pp. 501-507. [10.1093/protein/13.7.501]

Thermal unfolding and conformational stability of the recombinant domain II of glutamate dehydrogenase from the hyperthermophile Thermotoga maritima

CONSALVI, Valerio;CHIARALUCE, Roberta;SCANDURRA, Roberto;
2000

Abstract

Domain II (residues 189-338, M-r = 16 222) of glutamate dehydrogenase from the hyperthermophilic bacterium Thermotoga maritima was used as a model system to study reversible unfolding thermodynamics of this hyperthermostable enzyme. The protein was produced in large quantities in E. coli using a T7 expression system. It was shown that the recombinant domain is monomeric in solution and that it comprises secondary structural elements similar to those observed in the crystal structure of the hexameric enzyme,The recombinant domain is thermostable and undergoes reversible and cooperative thermal unfolding in the pH. range 5.90-8.00 with melting temperatures between 75.1 and 68.0 degrees C, Thermal unfolding of the protein was studied using differential scanning calorimetry and circular dichroism spectroscopy. Both methods yielded comparable values. The analysis revealed an unfolding enthalpy at 70 degrees C of 70.2 +/- 4.0 kcal/lmol and a Delta C-p value of 1.4 +/- 0.3 kcal/mol K, Chemical unfolding of the recombinant domain resulted in m values of 3.36 +/- 0.10 kcal/mol M for unfolding in guanidinium chloride and 1.46 +/- 0.04 kca/mol M in urea. The thermodynamic parameters for thermal and chemical unfolding equilibria indicate that domain II from T. maritima glutamate dehydrogenase is a thermostable protein with a Delta G(max) of 3.70 kcal/mol. However, the thermal and chemical stabilities of the domain are lower than those of the hexameric protein, indicating that interdomain interactions must play a significant role in the stabilization of T.maritima domain II glutamate dehydrogenase.
2000
domain; glutamate dehydrogenase; hyperthermophiles; protein; thermodynamic stability
01 Pubblicazione su rivista::01a Articolo in rivista
Thermal unfolding and conformational stability of the recombinant domain II of glutamate dehydrogenase from the hyperthermophile Thermotoga maritima / Consalvi, Valerio; Chiaraluce, Roberta; L., Giangiacomo; Scandurra, Roberto; P., Christova; A., Karshikoff; S., Knappa; R., Ladenstein. - In: PROTEIN ENGINEERING. - ISSN 0269-2139. - 13:7(2000), pp. 501-507. [10.1093/protein/13.7.501]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/249894
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