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杏仁β-葡萄糖苷酶在联合高压-热处理过程中的稳定性:动力学研究。

The stability of almond β-glucosidase during combined high pressure-thermal processing: a kinetic study.

机构信息

CSIRO Food and nutritional Sciences, 671 Sneydes Road, Melbourne, VIC, 3030, Australia,

出版信息

Appl Microbiol Biotechnol. 2013 Apr;97(7):2917-28. doi: 10.1007/s00253-012-4162-5. Epub 2012 May 29.

Abstract

The thermal and the combined high pressure-thermal inactivation kinetics of almond β-glucosidase (β-D-glucoside glucohydrolase, EC 3.2.1.21) were investigated at pressures from 0.1 to 600 MPa and temperatures ranging from 30 to 80 °C. Thermal treatments at temperatures higher than 50 °C resulted in significant inactivation with complete inactivation after 2 min of treatment at 80 °C. Both the thermal and high pressure inactivation kinetics were described well by first-order model. Application of pressure increased the inactivation kinetics of the enzyme except at moderate temperatures (50 to 70 °C) and pressures between 0.1 and 100 MPa where slight pressure stabilisation of the enzyme against thermal denaturation was observed. The activation energy for the inactivation of the enzyme at atmospheric pressure was estimated to be 216.2±8.6 kJ/mol decreasing to 55.2±3.9 kJ/mol at 600 MPa. The activation volumes were negative at all temperature conditions excluding the temperature-pressure range where slight pressure stabilisation was observed. The values of the activation volumes were estimated to be -29.6±0.6, -29.8±1.7, -20.6±3.2, -41.2±4.8, -36.5±1.8, -39.6±4.3, -31.0±4.5 and -33.8±3.9 cm3/mol at 30, 35, 40, 45, 50, 60, 65 and 70 °C, respectively, with no clear trend with temperature. The pressure-temperature dependence of the inactivation rate constants was well described by an empirical third-order polynomial model.

摘要

杏仁β-葡萄糖苷酶(β-D-葡萄糖苷葡萄糖水解酶,EC 3.2.1.21)的热失活动力学和高压-热失活动力学在 0.1 至 600 MPa 的压力和 30 至 80°C 的温度范围内进行了研究。温度高于 50°C 的热处理导致显著失活,在 80°C 下处理 2 分钟后完全失活。热失活动力学和高压失活动力学均很好地由一级模型描述。除了在中等温度(50 至 70°C)和 0.1 至 100 MPa 之间的压力下,观察到酶对热变性有轻微的压力稳定作用外,施加压力会增加酶的失活动力学。在大气压力下估计酶失活的活化能为 216.2±8.6 kJ/mol,在 600 MPa 时降低至 55.2±3.9 kJ/mol。除了观察到轻微压力稳定的温度-压力范围外,所有温度条件下的活化体积均为负值。在 30、35、40、45、50、60、65 和 70°C 下,活化体积的值估计分别为-29.6±0.6、-29.8±1.7、-20.6±3.2、-41.2±4.8、-36.5±1.8、-39.6±4.3、-31.0±4.5 和-33.8±3.9 cm3/mol,没有明显的温度趋势。失活速率常数的压力-温度依赖性很好地由经验三阶多项式模型描述。

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