Pacheco Benny, Maccarana Marco, Goodlett David R, Malmström Anders, Malmström Lars
Department of Experimental Medical Science, Lund University, Biomedical Center D12, SE-221 84 Lund, Sweden.
J Biol Chem. 2009 Jan 16;284(3):1741-7. doi: 10.1074/jbc.M805479200. Epub 2008 Nov 11.
Dermatan sulfate is a highly sulfated polysaccharide and has a variety of biological functions in development and disease. Iduronic acid domains in dermatan sulfate, which are formed by the action of two DS-epimerases, have a key role in mediating these functions. We have identified the catalytic site and three putative catalytic residues in DS-epimerase 1, His-205, Tyr-261, and His-450, by tertiary structure modeling and amino acid conservation to heparinase II. These residues were systematically mutated to alanine or more conserved residues, which resulted in complete loss of epimerase activity. Based on these data and the close relationship between lyase and epimerase reactions, we propose a model where His-450 functions as a general base abstracting the C5 proton from glucuronic acid. Subsequent cleavage of the glycosidic linkage by Tyr-261 generates a 4,5-unsaturated hexuronic intermediate, which is protonated at the C5 carbon by His-205 from the side of the sugar plane opposite to the side of previous proton abstraction. Concomitant recreation of the glycosidic linkage ends the reaction, generating iduronic acid. In addition, we show that proper N-glycosylation of DS-epimerase 1 is required for enzyme activity. This study represents the first description of the structural basis for epimerization by a glycosaminoglycan epimerase.
硫酸皮肤素是一种高度硫酸化的多糖,在发育和疾病过程中具有多种生物学功能。硫酸皮肤素中的艾杜糖醛酸结构域由两种硫酸皮肤素表异构酶作用形成,在介导这些功能中起关键作用。我们通过三级结构建模以及与肝素酶II的氨基酸保守性分析,确定了硫酸皮肤素表异构酶1中的催化位点和三个推定的催化残基,即His-205、Tyr-261和His-450。这些残基被系统地突变为丙氨酸或更保守的残基,导致表异构酶活性完全丧失。基于这些数据以及裂解酶和表异构酶反应之间的密切关系,我们提出了一个模型,其中His-450作为一个通用碱从葡萄糖醛酸中提取C5质子。随后,Tyr-261对糖苷键的裂解产生一个4,5-不饱和己糖醛酸中间体,该中间体在糖平面与先前质子提取侧相反的一侧被His-205质子化到C5碳上。糖苷键的同时重新形成结束反应,生成艾杜糖醛酸。此外,我们表明硫酸皮肤素表异构酶1的适当N-糖基化是酶活性所必需的。这项研究首次描述了糖胺聚糖表异构酶进行表异构化的结构基础。