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压力处理脱脂乳中β-乳球蛋白的变性

Denaturation of beta-lactoglobulin in pressure-treated skim milk.

作者信息

Anema Skelte G, Stockmann Regine, Lowe Edwin K

机构信息

Riddet Centre, Massey University, Private Bag 11222, Palmerston North, New Zealand.

出版信息

J Agric Food Chem. 2005 Oct 5;53(20):7783-91. doi: 10.1021/jf050326x.

Abstract

The kinetics of beta-lactoglobulin (beta-LG) denaturation in pressure-treated reconstituted skim milk samples over a wide pressurization range (100-600 MPa) and at various temperatures (10-40 degrees C) was studied. Denaturation was extremely dependent on the pressure and duration of treatment. At 100 MPa, no denaturation was observed regardless of the temperature or the holding time. At higher pressures, the level of denaturation increased with an increasing holding time at a constant pressure or with increasing pressure at a constant holding time. At 200 MPa, there was only a small effect of changing the temperature at pressurization. However, at higher pressures, increasing the temperature from 10 to 40 degrees C markedly increased the rate of denaturation. The two major genetic variants of beta-LG (A and B) behaved similarly to pressure treatment, although the B variant appeared to denature slightly faster than the A variant at low pressures (< or =400 MPa). The denaturation could be described as a second-order process for both beta-LG variants. There was a marked change in pressure dependence at about 300 MPa, which resulted in markedly different activation volumes in the two pressure ranges. Evaluation of the kinetic and thermodynamic parameters suggested that there may have been a transition from an aggregation-limited reaction to an unfolding-limited reaction as the pressure was increased.

摘要

研究了在较宽的压力范围(100 - 600兆帕)和不同温度(10 - 40摄氏度)下,压力处理的复原脱脂乳样品中β-乳球蛋白(β-LG)变性的动力学。变性极其依赖于处理压力和持续时间。在100兆帕时,无论温度或保温时间如何,均未观察到变性。在较高压力下,在恒定压力下变性程度随保温时间增加而增加,或在恒定保温时间下随压力增加而增加。在200兆帕时,加压时改变温度的影响很小。然而,在较高压力下,将温度从10摄氏度提高到40摄氏度会显著提高变性速率。β-LG的两种主要遗传变体(A和B)在压力处理下表现相似,尽管在低压(≤400兆帕)时B变体似乎比A变体变性稍快。对于两种β-LG变体,变性都可描述为二级过程。在约300兆帕时压力依赖性有明显变化,这导致在两个压力范围内活化体积明显不同。动力学和热力学参数的评估表明,随着压力增加,可能从聚集限制反应转变为解折叠限制反应。

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