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. 1996 Feb;38(1):161-70.

Differential scanning calorimetry of the irreversible thermal denaturation of cellulase from Streptomyces halstedii JM8

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  • PMID: 8932530

Differential scanning calorimetry of the irreversible thermal denaturation of cellulase from Streptomyces halstedii JM8

A L Garda-Salas et al. Biochem Mol Biol Int. 1996 Feb.

Abstract

High-sensitivity differential scanning calorimetry has been applied to characterize the irreversible thermal denaturation of a cellulase, assuming that thermal denaturation takes place according to the kinetic scheme N-k-->D, where k is a first-order kinetic constant that changes with temperature, as given by the Arrhenius equation; N the native state, and D the denatured one. On the basis of this model, the values of the rate constant as a function of temperature and the activation energy were calculated. The analytical data obtained with the fluorescence method as well by measurement of the enzymatic activity temperature dependence support this two-state kinetic model.

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