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通过活性分析和蛋白质晶体学探究皮罗霉菌E2木糖异构酶的金属依赖性

Metal Dependence of the Xylose Isomerase from Piromyces sp. E2 Explored by Activity Profiling and Protein Crystallography.

作者信息

Lee Misun, Rozeboom Henriëtte J, de Waal Paul P, de Jong Rene M, Dudek Hanna M, Janssen Dick B

机构信息

Biochemical Laboratory, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen , Nijenborgh 4, 9747 AG Groningen, The Netherlands.

DSM Biotechnology Center , Alexander Fleminglaan 1, 2613 AX Delft, The Netherlands.

出版信息

Biochemistry. 2017 Nov 14;56(45):5991-6005. doi: 10.1021/acs.biochem.7b00777. Epub 2017 Nov 2.

Abstract

Xylose isomerase from Piromyces sp. E2 (PirXI) can be used to equip Saccharomyces cerevisiae with the capacity to ferment xylose to ethanol. The biochemical properties and structure of the enzyme have not been described even though its metal content, catalytic parameters, and expression level are critical for rapid xylose utilization. We have isolated the enzyme after high-level expression in Escherichia coli, analyzed the metal dependence of its catalytic properties, and determined 12 crystal structures in the presence of different metals, substrates, and substrate analogues. The activity assays revealed that various bivalent metals can activate PirXI for xylose isomerization. Among these metals, Mn is the most favorable for catalytic activity. Furthermore, the enzyme shows the highest affinity for Mn, which was established by measuring the activation constants (K) for different metals. Metal analysis of the purified enzyme showed that in vivo the enzyme binds a mixture of metals that is determined by metal availability as well as affinity, indicating that the native metal composition can influence activity. The crystal structures show the presence of an active site similar to that of other xylose isomerases, with a d-xylose binding site containing two tryptophans and a catalytic histidine, as well as two metal binding sites that are formed by carboxylate groups of conserved aspartates and glutamates. The binding positions and conformations of the metal-coordinating residues varied slightly for different metals, which is hypothesized to contribute to the observed metal dependence of the isomerase activity.

摘要

来自热纤梭菌属E2菌株(PirXI)的木糖异构酶可用于赋予酿酒酵母将木糖发酵为乙醇的能力。尽管该酶的金属含量、催化参数和表达水平对于快速利用木糖至关重要,但其生化特性和结构尚未见报道。我们在大肠杆菌中高水平表达该酶后将其分离出来,分析了其催化特性对金属的依赖性,并测定了在不同金属、底物和底物类似物存在下的12种晶体结构。活性测定表明,各种二价金属均可激活PirXI进行木糖异构化。在这些金属中,锰对催化活性最为有利。此外,通过测量不同金属的激活常数(K)确定,该酶对锰的亲和力最高。对纯化酶的金属分析表明,在体内该酶结合的金属混合物由金属可用性以及亲和力决定,这表明天然金属组成可影响活性。晶体结构显示存在一个与其他木糖异构酶类似的活性位点,一个含有两个色氨酸和一个催化性组氨酸的d-木糖结合位点,以及由保守天冬氨酸和谷氨酸的羧基形成的两个金属结合位点。不同金属的金属配位残基的结合位置和构象略有不同,据推测这有助于观察到的异构酶活性对金属的依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/966c/5688467/3127f176b9cb/bi-2017-00777n_0001.jpg

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