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Bovine trypsin immobilization on agarose activated with divinylsulfone: Improved activity and stability via multipoint covalent attachment

机译:牛胰蛋白酶固定在用二乙烯基砜活化的琼脂糖上:通过多点共价连接提高了活性和稳定性

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摘要

© 2015 Elsevier B.V. All rights reserved. Trypsin has been immobilized on divinyl sulfone (DVS) activated agarose at pH 5, 7 and 10. While at pH 5 and 7 immobilization was slow and presented a negative effect on enzyme activity, the immobilization at pH 10 produced a significant increment of activity (by a 24 fold factor). Using this preparation, the effect on enzyme activity/stability of different blocking reagents (used as an enzyme-support reaction end point) were evaluated, selecting ethylenediamine (EDA) because it produced an increase in enzyme activity (a 4 fold factor) and the best results in terms of stability. Next, the effect of alkaline incubation on enzyme activity/stability before the blocking step was analyzed. Activity decreased by 40% after 72 h (but it should be considered that previously it had increased by a 24 fold factor), but the stability significantly improved after this incubation. Thus, after immobilization at different pH values, the immobilized trypsin was submitted to 72 h of alkaline incubation and blocked with EDA. The most active and stable preparation was that immobilized at pH 10. This preparation was less stable than the glyoxyl preparation in thermal inactivations (by less than a twofold factor), but was more stable in organic solvent inactivation (also by less than a twofold factor). The number of groups involved in the enzyme support attachment was 6 Lys using glyoxyl and became a minimum of 13 (including Lys, Tyr and His) using the DVS-activated support (the precision of the method did not permit to analyze the implication of some of the 3 terminal amino groups). Thus, this DVS-agarose support seems to be a very promising support to permit a very intense enzyme-support multipoint covalent attachment.
机译:©2015 Elsevier B.V.保留所有权利。胰蛋白酶已固定在pH 5、7和10的二乙烯基砜(DVS)活化的琼脂糖上。虽然在pH 5和7下固定很慢,并且对酶活性有负面影响,但在pH 10的固定下却产生了明显的活性增加(的24倍)。使用该制剂,评估了不同封闭剂(用作酶支持反应终点)对酶活性/稳定性的影响,选择乙二胺(EDA),因为它会增加酶活性(4倍),并且在稳定性方面最好的结果。接下来,在封闭步骤之前分析了碱性孵育对酶活性/稳定性的影响。 72小时后,活性降低了40%(但应该认为以前它的活性提高了24倍),但孵育后稳定性显着提高。因此,在不同的pH值固定后,将固定的胰蛋白酶进行72 h碱性孵育并用EDA封闭。最活跃,最稳定的制剂是固定在pH 10上的制剂。该制剂在热灭活方面比乙醛制剂更不稳定(小于两倍),但在有机溶剂灭活中更稳定(也小于两倍)。 )。使用乙醛基,参与酶支持物附着的基团数量为6 Lys,使用DVS激活的支持物时最少为13个(包括Lys,Tyr和His)(该方法的精确度无法分析某些蛋白质的含义)。 3个末端氨基中的一个)。因此,这种DVS-琼脂糖支持物似乎是非常有前途的支持物,以允许非常强烈的酶支持物多点共价连接。

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