Kulis Iu Iu
Biokhimiia. 1979 Mar;44(3):417-23.
The rate constants for inactivation of lactate dehydrogenase and alcohol dehydrogenase in solution at 65 degrees C (pH 7,5) are 0,72 and 0,013 min-1, respectively. The enzyme incorporation into acrylamide gels results in immobilized enzymes, whose residual activity is 18--25% of the original one. In 6,7% gels the rate of thermal inactivation for lactate dehydrogenase is decreased nearly 10-fold, whereas the inactivation rate for alcohol dehydrogenase is increased 4,6-fold as compared to the soluble enzymes. In 14% and 40% gels the inactivation constants for lactate dehydrogenase are 6,3.10(-3) and 5,9.10(-4) min-1, respectively. In 60% gels the thermal inactivation of lactate dehydrogenase is decelerated 3600-fold as compared to the native enzyme. The enthalpy and enthropy for the inactivation of the native enzyme are equal to 62,8 kcal/mole and 116,9 cal/(mole.grad.) for the native enzyme and those of gel-incorporated (6,7%) enzyme -- 38,7 kcal/mole and 42 cal/(mole.grad.), respectively. The thermal stability of alcohol dehydrogenase in 60% gels is increased 12-fold. To prevent gel swelling, methacrylic acid and allylamine were added to the matrix, with subsequent treatment by dicyclohexylcarbodiimide. The enzyme activity of the modified gels is 2,7--3% of that for the 6,7% gels. The stability of lactate dehydrogenase in such gels is significantly increased. A mechanism of stabilization of the subunit enzymes in highly concentrated gels is discussed.
在65摄氏度(pH 7.5)的溶液中,乳酸脱氢酶和乙醇脱氢酶失活的速率常数分别为0.72和0.013 min⁻¹。将酶掺入丙烯酰胺凝胶中可得到固定化酶,其残余活性为原来的18% - 25%。在6.7%的凝胶中,乳酸脱氢酶的热失活速率降低了近10倍,而乙醇脱氢酶的失活速率比可溶性酶增加了4.6倍。在14%和40%的凝胶中,乳酸脱氢酶的失活常数分别为6.3×10⁻³和5.9×10⁻⁴ min⁻¹。在60%的凝胶中,乳酸脱氢酶的热失活比天然酶减慢了3600倍。天然酶失活的焓和熵分别为62.8 kcal/mol和116.9 cal/(mol·K),而掺入凝胶(6.7%)中的酶的焓和熵分别为38.7 kcal/mol和42 cal/(mol·K)。乙醇脱氢酶在60%凝胶中的热稳定性提高了12倍。为防止凝胶膨胀,向基质中加入了甲基丙烯酸和烯丙胺,随后用二环己基碳二亚胺处理。改性凝胶的酶活性为6.7%凝胶的2.7% - 3%。乳酸脱氢酶在这种凝胶中的稳定性显著提高。本文讨论了高浓度凝胶中亚基酶的稳定机制。