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嗜热水生栖热菌HB8来源的D-木糖异构酶的D-木糖和D-葡萄糖异构酶活性的比较动力学

Comparative kinetics of D-xylose and D-glucose isomerase activities of the D-xylose isomerase from Thermus aquaticus HB8.

作者信息

Lehmacher A, Bisswanger H

机构信息

Physiologisch-Chemisches Institut der Universität Tübingen.

出版信息

Biol Chem Hoppe Seyler. 1990 Jun;371(6):527-36. doi: 10.1515/bchm3.1990.371.1.527.

Abstract

The D-xylose isomerase from T. aquaticus accepts, besides D-xylose, also D-glucose, and, with lower efficiency, D-ribose, and D-arabinose as alternative substrates. The activity of the enzyme is strictly dependent on divalent cations. Mn2+ is most effective in the D-xylose isomerase reaction and Co2+ in the D-glucose isomerization. Mg2+ is active in both reactions, Zn2+ only in the further one. The enzyme is strongly inhibited by Cu2+, and weakly by Ni2+, Fe2+, and Ca2+. A hyperbolic dependence of the reaction velocity of the D-xylose isomerase on the concentration of D-xylose xylose and of D-glucose was found, while biphasic saturation curves were obtained by variation of the metal ion concentrations. The D-glucose isomerization reaction shows normal behaviour with respect to the metal ions. A kinetic model was derived on the basis of the assumption of two binding sites for divalent cations, one cofactor site with higher affinity and a second, low affinity site, which modulates the activity of the enzyme.

摘要

嗜热栖热菌的D-木糖异构酶除了接受D-木糖外,还接受D-葡萄糖,以及效率较低的D-核糖和D-阿拉伯糖作为替代底物。该酶的活性严格依赖于二价阳离子。Mn2+在D-木糖异构酶反应中最有效,Co2+在D-葡萄糖异构化中最有效。Mg2+在两个反应中均有活性,Zn2+仅在进一步的反应中有活性。该酶受到Cu2+的强烈抑制,受到Ni2+、Fe2+和Ca2+的微弱抑制。发现D-木糖异构酶的反应速度对D-木糖和D-葡萄糖浓度呈双曲线依赖关系,而通过改变金属离子浓度获得了双相饱和曲线。D-葡萄糖异构化反应在金属离子方面表现出正常行为。基于二价阳离子有两个结合位点的假设推导了一个动力学模型,一个是具有较高亲和力的辅因子位点,另一个是低亲和力位点,它调节酶的活性。

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