首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Active Site of Oligogalacturonate Lyase Provides Unique Insights into Cytoplasmic Oligogalacturonate β-Elimination
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The Active Site of Oligogalacturonate Lyase Provides Unique Insights into Cytoplasmic Oligogalacturonate β-Elimination

机译:寡半乳糖醛酸裂解酶的活性位点提供了细胞质寡半乳糖醛酸β-消除的独特见解

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摘要

Oligogalacturonate lyases (OGLs; now also classified as pectate lyase family 22) are cytoplasmic enzymes found in pectinolytic members of Enterobacteriaceae, such as the enteropathogen Yersinia enterocolitica. OGLs utilize a β-elimination mechanism to preferentially catalyze the conversion of saturated and unsaturated digalacturonate into monogalacturonate and the 4,5-unsaturated monogalacturonate-like molecule, 5-keto-4-deoxyuronate. To provide mechanistic insights into the specificity of this enzyme activity, we have characterized the OGL from Y. enterocolitica, YeOGL, on oligogalacturonides and determined its three-dimensional x-ray structure to 1.65 Å. The model contains a Mn2+ atom in the active site, which is coordinated by three histidines, one glutamine, and an acetate ion. The acetate mimics the binding of the uronate group of galactourono-configured substrates. These findings, in combination with enzyme kinetics and metal supplementation assays, provide a framework for modeling the active site architecture of OGL. This enzyme appears to contain a histidine for the abstraction of the α-proton in the −1 subsite, a residue that is highly conserved throughout the OGL family and represents a unique catalytic base among pectic active lyases. In addition, we present a hypothesis for an emerging relationship observed between the cellular distribution of pectate lyase folding and the distinct metal coordination chemistries of pectate lyases.
机译:寡半乳糖醛酸裂合酶(OGL;现在也归类为果胶酸裂合酶家族22)是在肠杆菌科的果胶分解成员中发现的细胞质酶,例如肠病原耶尔森氏菌肠小肠结肠炎耶尔森氏菌。 OGL利用β消除机制优先催化饱和和不饱和的二半乳糖醛酸酯转化为单半乳糖醛酸酯和4,5,不饱和的单半乳糖醛酸酯样分子5-酮-4-脱氧尿酸酯。为了提供对该酶活性的特异性的机械见解,我们在寡半乳糖醛酸内酯中鉴定了来自耶氏肠球菌YoOGL的OGL,并确定其三维X射线结构为1.65Å。该模型在活性位点包含一个Mn 2 + 原子,该原子由三个组氨酸,一个谷氨酰胺和一个乙酸根离子配位。乙酸盐模拟半乳糖醛酸构型的底物的尿酸盐基团的结合。这些发现与酶动力学和金属补充分析相结合,为OGL的活性位点结构建模提供了框架。该酶似乎在-1个亚位点中包含一个用于抽象α-质子的组氨酸,该残基在整个OGL家族中高度保守,代表了果胶活性裂解酶中独特的催化碱基。另外,我们对果胶酸裂合酶折叠的细胞分布与果胶酸裂合酶的独特金属配位化学之间观察到的新兴关系提出了一种假设。

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