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Characterization of supports activated with divinyl sulfone as a tool to immobilize and stabilize enzymes via multipoint covalent attachment. Application to chymotrypsin

机译:用二乙烯基砜作为通过多点共价连接固定和稳定酶的工具活化的支持物的表征。胰凝乳蛋白酶的应用

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Divinyl sulfone (DVS) has been used to activate agarose beads. The DVS activated agarose resulted quite stable in the pH range 5-10 at 25 degrees C under wet conditions, and can react rapidly with alpha-amides of Cys and His, at pH 5-10, with Lys mainly at pH 10 and with Tyr in a much slower fashion. After blocking with different nucleophiles, the support lost all reactivity, confirming that this protocol could be useful as an enzyme-support reaction end point. Then, chymotrypsin was immobilized on this support at pH 5, 7 and 10. Even though the enzyme was immobilized at all pH values, the immobilization rate decreased with the pH value. The effect of the immobilization on the activity depended on the immobilization pH, at pH 7 the activity decreased (to 50%) more than at pH 10 (by a 25%), while at pH 5 the immobilization has no effect. Then, the effect of blocking with different reagents was analyzed. It was found that blocking with ethylenediamine improved the enzyme activity by 70% and gave the best stability. The stability of all enzyme preparations improved when 24 h incubation was performed at pH 10, but the qualitative stabilization depended on the inactivation conditions. The analysis of the amino acids of the preparation immobilized at pH 10 showed that Lys, Tyr and Cys residues were involved in the immobilization, involving a minimum of 10 residues (glyoxyl agarose gave 4 Lys involved in the immobilization). The new preparation was 4-5 fold more stable than glyoxyl agarose preparation, considered a very stable one, and in some instances was more active than the free enzyme (170% for the enzyme immobilized at pH 10). Thus, DVS activated supports are very promising to permit the multipoint covalent attachment of enzymes, and that way to improve their stability.
机译:二乙烯基砜(DVS)已用于激活琼脂糖珠。 DVS活化的琼脂糖在25°C的潮湿条件下于5-10的pH范围内保持稳定,可在5-10的pH值下与Cys和His的α-酰胺快速反应,主要在10的pH值下与Ly和Tyr以慢得多的方式。在用不同的亲核试剂封闭后,载体失去了所有反应性,证实了该方案可以用作酶-载体反应的终点。然后,将胰凝乳蛋白酶固定在pH为5、7和10的该载体上。即使在所有pH值下都固定了酶,固定率也随着pH值而降低。固定化对活性的影响取决于固定化pH,在pH 7时,活性降低(至50%)比在pH 10时降低(降低25%),而在pH 5时,固定化没有作用。然后,分析了用不同试剂封闭的效果。发现用乙二胺封闭可将酶活性提高70%,并具有最佳的稳定性。当在pH 10下孵育24小时时,所有酶制剂的稳定性均得到改善,但定性的稳定性取决于灭活条件。对固定在pH 10的制剂氨基酸的分析表明,固定化涉及Lys,Tyr和Cys残基,涉及最少10个残基(乙醛琼脂糖产生了4个Lys参与固定化)。新制剂比乙醛琼脂糖制剂稳定4-5倍,被认为是非常稳定的制剂,并且在某些情况下比游离酶(对于固定在pH 10的酶为170%)更具活性。因此,DVS活化的支持物非常有希望允许酶的多点共价连接,并以此提高其稳定性。

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