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精氨酸188在大肠杆菌MhpC和洋葱伯克霍尔德菌LB400 BphD的C-C水解酶催化机制中的催化作用。

Catalytic role for arginine 188 in the C-C hydrolase catalytic mechanism for Escherichia coli MhpC and Burkholderia xenovorans LB400 BphD.

作者信息

Li Chen, Li Jian-Jun, Montgomery Mark G, Wood Stephen P, Bugg Timothy D H

机构信息

Department of Chemistry, University of Warwick, Coventry CV4 7AL, UK.

出版信息

Biochemistry. 2006 Oct 17;45(41):12470-9. doi: 10.1021/bi061253t.

Abstract

The alpha/beta-hydrolase superfamily, comprised mainly of esterase and lipase enzymes, contains a family of bacterial C-C hydrolases, including MhpC and BphD which catalyze the hydrolytic C-C cleavage of meta-ring fission intermediates on the Escherichia coli phenylpropionic acid pathway and Burkholderia xenovorans LB400 biphenyl degradation pathway, respectively. Five active site amino acid residues (Arg-188, Asn-109, Phe-173, Cys-261, and Trp-264) were identified from sequence alignments that are conserved in C-C hydrolases, but not in enzymes of different function. Replacement of Arg-188 in MhpC with Gln and Lys led to 200- and 40-fold decreases, respectively, in k(cat); the same replacements for Arg-190 of BphD led to 400- and 700-fold decreases, respectively, in k(cat). Pre-steady-state kinetic analysis of the R188Q MhpC mutant revealed that the first step of the reaction, keto-enol tautomerization, had become rate-limiting, indicating that Arg-188 has a catalytic role in ketonization of the dienol substrate, which we propose is via substrate destabilization. Mutation of nearby residues Phe-173 and Trp-264 to Gly gave 4-10-fold reductions in k(cat) but 10-20-fold increases in K(m), indicating that these residues are primarily involved in substrate binding. The X-ray structure of a succinate-H263A MhpC complex shows concerted movements in the positions of both Phe-173 and Trp-264 that line the approach to Arg-188. Mutation of Asn-109 to Ala and His yielded 200- and 350-fold reductions, respectively, in k(cat) and pre-steady-state kinetic behavior similar to that of a previous S110A mutant, indicating a role for Asn-109 is positioning the active site loop containing Ser-110. The catalytic role of Arg-188 is rationalized by a hydrogen bond network close to the C-1 carboxylate of the substrate, which positions the substrate and promotes substrate ketonization, probably via destabilization of the bound substrate.

摘要

α/β-水解酶超家族主要由酯酶和脂肪酶组成,其中包含一类细菌C-C水解酶,包括MhpC和BphD,它们分别催化大肠杆菌苯丙酸途径上间环裂变中间体的水解C-C裂解以及伯克霍尔德氏菌LB400联苯降解途径。通过序列比对鉴定出五个活性位点氨基酸残基(Arg-188、Asn-109、Phe-173、Cys-261和Trp-264),这些残基在C-C水解酶中保守,但在不同功能的酶中不保守。将MhpC中的Arg-188替换为Gln和Lys分别导致k(cat)下降200倍和40倍;对BphD的Arg-190进行相同替换分别导致k(cat)下降400倍和700倍。对R188Q MhpC突变体的稳态前动力学分析表明,反应的第一步,即酮-烯醇互变异构,已成为限速步骤,这表明Arg-188在二烯醇底物的酮化反应中具有催化作用,我们认为这是通过底物去稳定化实现的。将附近的残基Phe-173和Trp-264突变为Gly导致k(cat)降低4至10倍,但K(m)增加10至20倍,表明这些残基主要参与底物结合。琥珀酸-H263A MhpC复合物的X射线结构显示,位于通往Arg-188途径上的Phe-173和Trp-264的位置发生了协同移动。将Asn-109突变为Ala和His分别导致k(cat)降低200倍和350倍,并且稳态前动力学行为与先前的S110A突变体相似,表明Asn-109的作用是定位包含Ser-110的活性位点环。靠近底物C-1羧酸盐的氢键网络使Arg-188的催化作用合理化,该网络定位底物并促进底物酮化,可能是通过结合底物的去稳定化实现的。

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