Effects of high pressure and low temperature on β-lactoglobulin unfolding and aggregation

被引:50
作者
Kolakowski, P [1 ]
Dumay, E [1 ]
Cheftel, JC [1 ]
机构
[1] Univ Montpellier 2, Lab Genie Biol & Sci Aliments, Unite Biochim & Technol Alimentaires, F-34095 Montpellier 05, France
关键词
cold temperature denaturation; high pressure; beta-lactoglobulin;
D O I
10.1016/S0268-005X(01)00017-0
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
A solution of P-lactoglobulin (beta -LG) isolate (2% protein, w/w, in 10 mM Bis-TRIS buffer, pH 7; 40 g cylindrical sample) was processed for about 15 min, at 300 MPa in the range +5/+36 degreesC, in water (+25 degreesC) or in a propanediol/water mix (+25, +4 or -2 degreesC) as pressure transmitting medium (PTM). Sample temperature was monitored with T thermocouples located in the sample cylinder. Pressure-induced unfolding of beta -LG was significantly lower after processing in PTM at +4 or -2 degreesC (sample at + 10/+ 15 degreesC or +5/+ 10 degreesC, respectively) than at +25 degreesC (sample at +25/+-36 degreesC). Indeed, the residual enthalpy of thermal denaturation (DeltaH(TD)) of the pressurized beta -LG solutions, measured by differential scanning calorimetry 1-2 h after pressure release, was close to 60, 53, 83 or 86% of that of native beta -LG, when pressurization was carried out in water at +25 degreesC or in propanediol/water at +25, +4 or -2 degreesC, respectively. beta -LG aggregates (36-500 kDa) were detected by gel permeation chromatography when pressurization was carried out at +25 degreesC (in water or in propanediol/water) but not at lower temperatures. The same beta -LG isolate solution was also frozen by pressure release through immersion in propanediol/water at -29 degreesC, pressurization to 300 MPa, cooling the sample to -16 degreesC (at 300 MPa) in 13 min, and releasing pressure in 3-4 s. This sequence induced instant and uniform ice nucleation throughout the sample. Freezing was then completed to -20 degreesC at 0.1 MPa, followed by immediate thawing in water at +20 degreesC. beta -LC processed in this manner retained 93% of its native enthalpy (DeltaH(TD)), indicating only slight protein unfolding. Chromatography revealed the absence of protein aggregation. Freezing beta -LG isolate solutions (2 or 10% protein, w/w, in the same buffer) at atmospheric pressure in still air at -20 or -35 degreesC, followed by frozen storage, also did not cause any unfolding or aggregation. Conformation changes in pure beta -LG (1 mg/ml of 10 mM Bis-TRIS or of 50 mM phosphate buffer, pH 7.0) induced at 200 MPa by low or sub-zero temperatures without ice formation were monitored by UV spectroscopy under pressure. Decreasing the temperature of the beta -LG solution under 200 MPa from +20 to +4 degreesC, then to -15 degreesC, led to marked 'blue shifts' in the 4th derivative UV spectra, revealing that tyrosine and tryptophan residues became significantly more exposed to an aqueous microenvironment at low temperatures. These shifts may be interpreted as different beta -LG conformations existing under various PIT conditions: native conformation at atmospheric pressure/+20 degreesC; pressure-denatured state at 200 MPa/+20 degreesC; fully hydrated, cold denatured state at 200 MPa/-15 degreesC. This could explain why pressure up to 300 MPa induced less protein unfolding or aggregation at a low or sub-zero temperature than at +25/+36 degreesC. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:215 / 232
页数:18
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