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酪氨酸383在白三烯A4水解酶肽酶反应中起催化作用的证据。

Evidence for a catalytic role of tyrosine 383 in the peptidase reaction of leukotriene A4 hydrolase.

作者信息

Blomster M, Wetterholm A, Mueller M J, Haeggström J Z

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

出版信息

Eur J Biochem. 1995 Aug 1;231(3):528-34. doi: 10.1111/j.1432-1033.1995.0528d.x.

Abstract

Leukotriene A4 (LTA4) hydrolase is a bifunctional zinc metalloenzyme which catalyzes the final step in the biosynthesis of the proinflammatory leukotriene B4 and which also possesses a peptidase activity. From sequence comparisons with aminopeptidases, a tyrosine at position 383 in LTA4 hydrolase has been suggested as a possible catalytic amino acid. To explore the potential role of this amino acid in catalysis, we replaced the tyrosine residue with phenylalanine, histidine or glutamine residues by site-directed mutagenesis. The mutated cDNAs were expressed in Escherichia coli and the resulting recombinant proteins, named [Y383F]LTA4 hydrolase, [Y383H]LTA4 hydrolase and [Y383Q]LTA4 hydrolase, were purified to homogeneity to allow assays of both the epoxide hydrolase activity, i.e. the conversion of LTA4 into leukotriene B4, and the peptidase activity. None of the mutated proteins exhibited significant peptidase activities, all of them showing activities less than 0.3% that of the wild-type enzyme. The epoxide hydrolase activity was not affected to the same degree and corresponded to 11, 16 and 17% that of the unmutated enzyme for [Y383F]LTA4 hydrolase, [Y383H]LTA4 hydrolase and [Y383Q]LTA4 hydrolase, respectively. Kinetic analysis was performed with the mutant [Y383Q]LTA4 hydrolase, which revealed an approximately 10-fold increase in Km for leukotriene A4 compared to that for the unmutated enzyme. At high concentrations of substrate, the difference in enzyme velocity was only moderate, with Vmax values of 600 nmol.mg-1.min-1 and 1000 nmol.mg-1.min-1 for [Y383Q]LTA4 hydrolase and the wild-type enzyme, respectively. No such effect of substrate concentration could be observed on the peptidase activity. As a positive control, we exchanged a glycine residue in position 386 for an alanine residue, and the recombinant protein, [G386A]LTA4 hydrolase retained 19% and 77% of the peptidase and epoxide hydrolase activities, respectively. The results from this study are consistent with a role for Tyr383 in the peptidase reaction of LTA4 hydrolase, where it may act as a proton donor in a general base mechanism. However, our data do not allow a similar interpretation for the mechanism involved in the hydrolysis of LTA4 into LTB4.

摘要

白三烯A4(LTA4)水解酶是一种双功能锌金属酶,它催化促炎白三烯B4生物合成的最后一步,并且还具有肽酶活性。通过与氨肽酶的序列比较,有人提出LTA4水解酶中第383位的酪氨酸可能是一种潜在的催化氨基酸。为了探究该氨基酸在催化过程中的潜在作用,我们通过定点诱变将酪氨酸残基替换为苯丙氨酸、组氨酸或谷氨酰胺残基。突变的cDNA在大肠杆菌中表达,产生的重组蛋白分别命名为[Y383F]LTA4水解酶、[Y383H]LTA4水解酶和[Y383Q]LTA4水解酶,将它们纯化至同质,以便测定环氧水解酶活性(即将LTA4转化为白三烯B4)和肽酶活性。所有突变蛋白均未表现出明显的肽酶活性,其活性均低于野生型酶的0.3%。环氧水解酶活性受到的影响程度不同,[Y383F]LTA4水解酶、[Y383H]LTA4水解酶和[Y383Q]LTA4水解酶的环氧水解酶活性分别相当于未突变酶的11%、16%和17%。对突变体[Y383Q]LTA4水解酶进行了动力学分析,结果显示与未突变酶相比,其对白三烯A4的Km值增加了约10倍。在高底物浓度下,酶促反应速度的差异仅为中等程度,[Y383Q]LTA4水解酶和野生型酶的Vmax值分别为600 nmol·mg-1·min-1和1000 nmol·mg-1·min-1。未观察到底物浓度对肽酶活性有此类影响。作为阳性对照,我们将第386位的甘氨酸残基替换为丙氨酸残基,重组蛋白[G386A]LTA4水解酶分别保留了19%的肽酶活性和77%的环氧水解酶活性。本研究结果表明,Tyr383在LTA4水解酶的肽酶反应中发挥作用,在该反应中它可能在一般碱机制中充当质子供体。然而,我们的数据无法对LTA4水解为LTB4的机制做出类似解释。

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