Rudberg Peter C, Tholander Fredrik, Thunnissen Marjolein M G M, Samuelsson Bengt, Haeggstrom Jesper Z
Department of Medical Biochemistry and Biophysics, Division of Chemistry II, Karolinska Institutet, S-171 77 Stockholm, Sweden.
Proc Natl Acad Sci U S A. 2002 Apr 2;99(7):4215-20. doi: 10.1073/pnas.072090099. Epub 2002 Mar 26.
Leukotriene A4 (LTA4, 5S-trans-5,6-oxido-7,9-trans-11,14-cis-eicosatetraenoic acid) hydrolase (LTA4H)/aminopeptidase is a bifunctional zinc metalloenzyme that catalyzes the final and rate-limiting step in the biosynthesis of leukotriene B4 (LTB4, 5S,12R-dihydroxy-6,14-cis-8,10-trans-eicosatetraenoic acid), a classical chemoattractant and immune modulating lipid mediator. Two chemical features are key to the bioactivity of LTB4, namely, the chirality of the 12R-hydroxyl group and the cis-trans-trans geometry of the conjugated triene structure. From the crystal structure of LTA4H, a hydrophilic patch composed of Gln-134, Tyr-267, and Asp-375 was identified in a narrow and otherwise hydrophobic pocket, believed to bind LTA4. In addition, Asp-375 belongs to peptide K21, a previously characterized 21-residue active site-peptide to which LTA4 binds during suicide inactivation. In the present report we used site-directed mutagenesis and x-ray crystallography to show that Asp-375, but none of the other candidate residues, is specifically required for the epoxide hydrolase activity of LTA4H. Thus, mutation of Asp-375 leads to a selective loss of the enzyme's ability to generate LTB4 whereas the aminopeptidase activity is preserved. We propose that Asp-375, possibly assisted by Gln-134, acts as a critical determinant for the stereoselective introduction of the 12R-hydroxyl group and thus the biological activity of LTB4.
白三烯A4(LTA4,5S-反式-5,6-环氧-7,9-反式-11,14-顺式-二十碳四烯酸)水解酶(LTA4H)/氨肽酶是一种双功能锌金属酶,催化白三烯B4(LTB4,5S,12R-二羟基-6,14-顺式-8,10-反式-二十碳四烯酸)生物合成的最后一步及限速步骤,LTB4是一种典型的趋化因子和免疫调节脂质介质。LTB4生物活性的两个化学特征至关重要,即12R-羟基的手性和共轭三烯结构的顺-反-反几何构型。从LTA4H的晶体结构中,在一个狭窄且其他部分为疏水的口袋中鉴定出了一个由Gln-134、Tyr-267和Asp-375组成的亲水区,据信该区域可结合LTA4。此外,Asp-375属于肽K21,这是一个先前已表征的21个残基的活性位点肽,LTA4在自杀失活过程中与之结合。在本报告中,我们使用定点诱变和X射线晶体学表明,LTA4H的环氧化物水解酶活性特别需要Asp-375,而其他候选残基则不需要。因此,Asp-375的突变导致该酶生成LTB4的能力选择性丧失,而氨肽酶活性得以保留。我们提出,Asp-375可能在Gln-134的协助下,作为12R-羟基立体选择性引入以及LTB4生物活性的关键决定因素。