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首页> 外文期刊>Biochemistry >Evolution of Enzymatic Activities in the Enolase Superfamily: Crystal Structures of the L-Ala-D/L-Glu Epimerases from Escherichia coli and Bacillus subtilis
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Evolution of Enzymatic Activities in the Enolase Superfamily: Crystal Structures of the L-Ala-D/L-Glu Epimerases from Escherichia coli and Bacillus subtilis

机译:烯醇酶超家族中酶活性的演变:大肠杆菌和枯草芽孢杆菌的L-丙氨酸-D / L-Glu Epimerases的晶体结构。

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The members of the enolase superfamily catalyze different overall reactions, yet share a partial reaction that involves Mg~(2+)-assisted enolization of the substrate carboxylate anion. The fate of the resulting enolate intermediate is determined by the active site of each enzyme. Several members of this superfamily have been structurally characterized to permit an understanding of the evolutionary strategy for using a common structural motif to catalyze different overall reactions. In the preceding paper, two new members of the superfamily were identified that catalyze the epimerization of the glutamate residue in L-Ala-D/L-Glu. These enzymes belong to the muconate lactonizing enzyme subgroup of the enolase superfamily, and their sequences are only 31% identical. The structure of YcjG, the epimerase from Escherichia coli, was determined by MAD phhasing using both the SeMet-labeled protein and a heavy atom derivative. The structure of YkfB, the epimerase from Bacillus subtilis, was determined by molecular replacement using the muconate lactonizing enzyme as a search model. In this paper, we report the three-dimensional structures of these enzymes and compare them to the structure of o-succinylbenzoate synthase, another member of the muconate lactonizing enzyme subgroup.
机译:烯醇化酶超家族的成员催化不同的总反应,但共有部分反应,该反应涉及底物羧酸根阴离子的Mg〜(2+)辅助烯醇化。所得烯醇酸酯中间体的命运取决于每种酶的活性位点。该超家族的几个成员已经进行了结构表征,可以理解使用共同结构基元催化不同总体反应的进化策略。在之前的论文中,鉴定了超家族的两个新成员,它们催化L-Ala-D / L-Glu中谷氨酸残基的差向异构化。这些酶属于烯醇化酶超家族的粘液酸内酯化酶亚组,它们的序列只有31%相同。 YcjG(大肠杆菌的差向异构酶)的结构通过SeMet标记的蛋白质和重原子衍生物通过MAD磷酸化确定。 YkfB(枯草芽孢杆菌的差向异构酶)的结构是通过使用粘液内酯化酶作为搜索模型通过分子置换来确定的。在本文中,我们报告了这些酶的三维结构,并将它们与粘康酸酯内酯化酶亚组的另一成员邻琥珀酰苯甲酸酯合酶的结构进行了比较。

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