Souza Paula Monteiro, Aliakbarian Bahar, Filho Edivaldo Ximenes Ferreira, Magalhães Pérola Oliveira, Junior Adalberto Pessoa, Converti Attilio, Perego Patrizia
Department of Biochemical and Pharmaceutical Technology, University of São Paulo, São Paulo, SP, 05508-000, Brazil.
Department of Civil, Chemical and Environmental Engineering, Pole of Chemical Engineering, Genoa University, via Opera Pia 15, 16145 Genoa, Italy.
Int J Biol Macromol. 2015 Nov;81:17-21. doi: 10.1016/j.ijbiomac.2015.07.043. Epub 2015 Jul 23.
The kinetics of a thermostable extracellular acid protease produced by an Aspergillus foetidus strain was investigated at different pH, temperatures and substrate concentrations. The enzyme exhibited maximal activity at pH 5.0 and 55°C, and its irreversible deactivation was well described by first-order kinetics. When temperature was raised from 55 to 70°C, the deactivation rate constant increased from 0.018 to 5.06h(-1), while the half-life decreased from 37.6 to 0.13h. The results of activity collected at different temperatures were then used to estimate, the activation energy of the hydrolysis reaction (E*=19.03kJ/mol) and the standard enthalpy variation of reversible enzyme unfolding (ΔH°U=19.03kJ/mol). The results of residual activity tests carried out in the temperature range 55-70°C allowed estimating the activation energy (E()d=314.12kJ/mol), enthalpy (311.27≤(ΔH°d≤311.39kJ/mol), entropy (599.59≤ΔS()d≤610.49kJ/mol K) and Gibbs free energy (103.18≤ΔG(*)d≤113.87kJ/mol) of the enzyme irreversible denaturation. These thermodynamic parameters suggest that this new protease is highly thermostable and could be important for industrial applications. To the best of our knowledge, this is the first report on thermodynamic parameters of an acid protease produced by A. foetidus.
研究了一株臭曲霉产生的热稳定胞外酸性蛋白酶在不同pH值、温度和底物浓度下的动力学。该酶在pH 5.0和55°C时表现出最大活性,其不可逆失活可用一级动力学很好地描述。当温度从55°C升至70°C时,失活速率常数从0.018增加到5.06h⁻¹,而半衰期从37.6h降至0.13h。然后利用在不同温度下收集的活性结果估算水解反应的活化能(E* = 19.03kJ/mol)和可逆酶解折叠的标准焓变(ΔH°U = 19.03kJ/mol)。在55 - 70°C温度范围内进行的残余活性测试结果可估算酶不可逆变性的活化能(E()d = 314.12kJ/mol)、焓(311.27≤(ΔH°d≤311.39kJ/mol)、熵(599.59≤ΔS()d≤610.49kJ/mol K)和吉布斯自由能(103.18≤ΔG(*)d≤113.87kJ/mol)。这些热力学参数表明这种新型蛋白酶具有高度热稳定性,可能对工业应用很重要。据我们所知,这是关于臭曲霉产生的酸性蛋白酶热力学参数的首次报道。