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牛血浆蛋白水解的动力学概念模型 - ALCALASE® 2.9L:产物抑制的作用。

Kinetic-conceptual model of the hydrolysis of bovine plasma proteins - ALCALASE® 2.9L: The role of inhibition by product.

作者信息

Figueroa Omar A, Alean Jader D, Marcet Ismael, Rendueles Manuel, Zapata José E

机构信息

Faculty of Engineering, Guajira University, Km 5 Road to Maicao, Riohacha, La Guajira, Colombia.

Department of Chemical and Environmental Engineering, University of Oviedo, C/Julián Clavería 8, 33006, Oviedo, Spain.

出版信息

Heliyon. 2023 Oct 14;9(10):e21002. doi: 10.1016/j.heliyon.2023.e21002. eCollection 2023 Oct.

Abstract

In the present work, the inhibitory effect of the peptide fractions, obtained through enzymatic hydrolysis of bovine plasma was evaluated, on the enzyme used in the reaction (Alcalase 2.4 L). In this sense, Ultra-filtered peptide fractions of different molecular sizes (A: Fraction>10; B: Fraction 10-3 kDa; and C: Fraction <3 kDa), were used to verify the impact on the total hydrolysis rate. The Fractions between 3 and 10 kDa were refined to fit a conceptual kinetic model which considers inhibition by product and substrate. Additionally, the inactivation of the enzyme through the reaction time was evaluated and its effects incorporated into the model. It was shown that some peptides released in the successive stages of the reaction can in turn inhibit the activity of the hydrolyzing enzyme. The model evaluated suggests a time-varying expression of inhibition parameters as a function of the initial substrate concentration in the reaction. This is based on the kinetic changes of the product profiles for each reaction time in the evaluated operating conditions (S variable). A greater inhibitory effect due to the products is evidenced when the reaction occurs with a higher load of the initial substrate (S0 = 20 g/L).

摘要

在本研究中,评估了通过牛血浆酶解获得的肽段对反应中所用酶(碱性蛋白酶2.4L)的抑制作用。从这个意义上说,使用了不同分子大小的超滤肽段(A:大于10kDa的肽段;B:10 - 3kDa的肽段;C:小于3kDa的肽段)来验证对总水解速率的影响。对3至10kDa之间的肽段进行了细化,以拟合一个考虑产物和底物抑制作用的概念动力学模型。此外,评估了酶在反应过程中的失活情况,并将其影响纳入模型。结果表明,在反应的连续阶段释放的一些肽段反过来会抑制水解酶的活性。所评估的模型表明,抑制参数随反应中初始底物浓度的变化而随时间变化。这是基于在所评估的操作条件下(S变量)每个反应时间产物分布的动力学变化。当反应在较高初始底物负载(S0 = 20g/L)下进行时,产物的抑制作用更明显。

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