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海洋红杆菌科 L-卤代酸脱卤酶含有一个新颖的 His/Glu 双联体,可激活催化水。

Marine Rhodobacteraceae L-haloacid dehalogenase contains a novel His/Glu dyad that could activate the catalytic water.

机构信息

The Henry Wellcome Building for Biocatalysis, Biosciences, College of Life and Environmental Sciences, University of Exeter, Exeter, UK.

出版信息

FEBS J. 2013 Apr;280(7):1664-80. doi: 10.1111/febs.12177. Epub 2013 Mar 8.

Abstract

The putative L-haloacid dehalogenase gene (DehRhb) from a marine Rhodobacteraceae family was cloned and overexpressed in Escherichia coli. The DehRhb protein was shown to be an L-haloacid dehalogenase with highest activity towards brominated substrates with short carbon chains (≤ C3). The optimal temperature for enzyme activity was 55 °C, and the Vmax and Km were 1.75 μm·min(-1) ·mg(-1) of protein and 6.72 mm, respectively, when using monobromoacetic acid as a substrate. DehRhb showed moderate thermal stability, with a melting temperature of 67 °C. The enzyme demonstrated high tolerance to solvents, as shown by thermal shift experiments and solvent incubation assays. The DehRhb protein was crystallized and structures of the native, reaction intermediate and substrate-bound forms were determined. The active site of DehRhb had significant differences from previously studied L-haloacid dehalogenases. The asparagine and arginine residues shown to be essential for catalytic activity in other L-haloacid dehalogenases are not present in DehRhb. The histidine residue which replaces the asparagine residue in DehRhb was coordinated by a conformationally strained glutamate residue that replaces a conserved glycine. The His/Glu dyad is positioned for deprotonation of the catalytic water which attacks the ester bond in the reaction intermediate. The catalytic water in DehRhb is shifted by ~ 1.5 Å from its position in other L-haloacid dehalogenases. A similar His/Glu or Asp dyad is known to activate the catalytic water in haloalkane dehalogenases. The DehRhb enzyme represents a novel member within the L-haloacid dehalogenase family and it has potential to be used as a commercial biocatalyst.

摘要

从海洋红杆菌科克隆并在大肠杆菌中过表达了假定的 L-卤代酸脱卤酶基因 (DehRhb)。DehRhb 蛋白被证明是一种 L-卤代酸脱卤酶,对短链 (≤C3) 的溴代底物具有最高的活性。酶活性的最适温度为 55°C,以单溴乙酸为底物时,Vmax 和 Km 分别为 1.75 μm·min(-1)·mg(-1)蛋白和 6.72 mm。DehRhb 表现出中等的热稳定性,熔点为 67°C。酶对溶剂具有高耐受性,这通过热移实验和溶剂孵育实验得到证明。DehRhb 蛋白结晶,并确定了其天然、反应中间物和底物结合形式的结构。DehRhb 的活性位点与以前研究过的 L-卤代酸脱卤酶有显著差异。在其他 L-卤代酸脱卤酶中被证明对催化活性至关重要的天冬酰胺和精氨酸残基不存在于 DehRhb 中。取代 DehRhb 中天冬酰胺残基的组氨酸残基由取代保守甘氨酸的构象应变谷氨酸残基配位。His/Glu 二联体的位置有利于攻击反应中间物中酯键的催化水的去质子化。DehRhb 中的催化水与其他 L-卤代酸脱卤酶中的位置相比移动了约 1.5 Å。已知类似的 His/Glu 或 Asp 二联体可激活卤代烷烃脱卤酶中的催化水。DehRhb 酶代表 L-卤代酸脱卤酶家族中的一个新成员,具有作为商业生物催化剂的潜力。

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