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一种用于研究交联γ-内酰胺酶生物转化作用的微反应器。

A microreactor for the study of biotransformations by a cross-linked gamma-lactamase enzyme.

作者信息

Hickey Anne Marie, Ngamsom Bongkot, Wiles Charlotte, Greenway Gillian M, Watts Paul, Littlechild Jennifer A

机构信息

University of Exeter, UK.

出版信息

Biotechnol J. 2009 Apr;4(4):510-6. doi: 10.1002/biot.200800302.

Abstract

A (+)-gamma-lactamase was precipitated, cross-linked and the resulting solid crushed prior to immobilisation within a capillary column microreactor. The microreactor was subsequently used to study enzyme stability, activity, kinetics and substrate specificity. The thermophilic (+)-gamma-lactamase retained 100% of its initial activity at the assay temperature, 80 degrees C, for 6 h and retained 52% activity after 10 h, indicating the advantage of immobilisation. This high stability of the immobilised enzyme provided the advantage that it could be utilised to screen many compounds in the microreactor system. This advantage overcame the fact that the immobilisation process affected enzyme kinetics and activity, which was reduced (by 70%) compared to the free enzyme. In general, the enzyme displayed similar substrate specificity to that found in a previous study for the free enzyme; however, enhanced activity was seen towards one substrate, acrylamide. The system developed correlates well with the free enzyme in batch assay and indicates the suitability of the system for enzyme substrate screening, allowing a significant reduction in cost, due to the reduced amounts of enzyme, substrates and other assay constituents required.

摘要

一种(+)-γ-内酰胺酶经过沉淀、交联,所得固体在固定于毛细管柱微反应器之前进行粉碎。随后使用该微反应器研究酶的稳定性、活性、动力学和底物特异性。嗜热(+)-γ-内酰胺酶在80℃的测定温度下6小时内保持其初始活性的100%,10小时后保持52%的活性,表明了固定化的优势。固定化酶的这种高稳定性具有可用于在微反应器系统中筛选许多化合物的优势。这一优势克服了固定化过程影响酶动力学和活性这一事实,与游离酶相比,其活性降低了(70%)。总体而言,该酶表现出与先前对游离酶研究中发现的类似底物特异性;然而,对一种底物丙烯酰胺的活性增强。所开发的系统在批量测定中与游离酶相关性良好,表明该系统适用于酶底物筛选,由于所需酶、底物和其他测定成分的量减少,从而显著降低了成本。

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