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大肠杆菌细胞膜的差异选择性改变了半乳糖酶催化异构化为塔格糖的平衡。

Differential selectivity of the Escherichia coli cell membrane shifts the equilibrium for the enzyme-catalyzed isomerization of galactose to tagatose.

作者信息

Kim Jin-Ha, Lim Byung-Chul, Yeom Soo-Jin, Kim Yeong-Su, Kim Hye-Jung, Lee Jung-Kul, Lee Sook-Hee, Kim Seon-Won, Oh Deok-Kun

机构信息

Department of Bioscience and Biotechnology, Konkuk University, 1 Hwayang-dong, Gwangjin-gu, Seoul 143-701, South Korea.

出版信息

Appl Environ Microbiol. 2008 Apr;74(8):2307-13. doi: 10.1128/AEM.02691-07. Epub 2008 Feb 8.

Abstract

An Escherichia coli galactose kinase gene knockout (DeltagalK) strain, which contains the l-arabinose isomerase gene (araA) to isomerize d-galactose to d-tagatose, showed a high conversion yield of tagatose compared with the original galK strain because galactose was not metabolized by endogenous galactose kinase. In whole cells of the DeltagalK strain, the isomerase-catalyzed reaction exhibited an equilibrium shift toward tagatose, producing a tagatose fraction of 68% at 37 degrees C, whereas the purified l-arabinose isomerase gave a tagatose equilibrium fraction of 36%. These equilibrium fractions are close to those predicted from the measured equilibrium constants of the isomerization reaction catalyzed in whole cells and by the purified enzyme. The equilibrium shift in these cells resulted from the higher uptake and lower release rates for galactose, which is a common sugar substrate, than for tagatose, which is a rare sugar product. A DeltamglB mutant had decreased uptake rates for galactose and tagatose, indicating that a methylgalactoside transport system, MglABC, is the primary contributing transporter for the sugars. In the present study, whole-cell conversion using differential selectivity of the cell membrane was proposed as a method for shifting the equilibrium in sugar isomerization reactions.

摘要

一种大肠杆菌半乳糖激酶基因敲除(ΔgalK)菌株,其含有将D-半乳糖异构化为D-塔格糖的L-阿拉伯糖异构酶基因(araA),与原始galK菌株相比,该菌株显示出较高的塔格糖转化率,因为半乳糖不会被内源性半乳糖激酶代谢。在ΔgalK菌株的全细胞中,异构酶催化的反应表现出向塔格糖的平衡移动,在37℃下产生68%的塔格糖馏分,而纯化的L-阿拉伯糖异构酶产生的塔格糖平衡馏分为36%。这些平衡馏分接近根据在全细胞中催化的异构化反应以及纯化酶的测量平衡常数预测的值。这些细胞中的平衡移动是由于作为常见糖底物的半乳糖比作为稀有糖产物的塔格糖具有更高的摄取速率和更低的释放速率。ΔmglB突变体对半乳糖和塔格糖的摄取速率降低,表明甲基半乳糖苷转运系统MglABC是这些糖的主要转运贡献者。在本研究中,提出了利用细胞膜的差异选择性进行全细胞转化作为一种使糖异构化反应平衡移动的方法。

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