首页> 外文期刊>Acta crystallographica, Section D. Biological crystallography >Ligand-bound structures of 3-deoxy-D-manno-octulosonate 8-phosphate phosphatase from Moraxella catarrhalis reveal a water channel connecting to the active site for the second step of catalysis
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Ligand-bound structures of 3-deoxy-D-manno-octulosonate 8-phosphate phosphatase from Moraxella catarrhalis reveal a water channel connecting to the active site for the second step of catalysis

机译:卡他莫拉氏菌的3-脱氧-D-甘露聚糖-辛磺酸八磷酸酯酶的配体结合结构揭示了一条水通道,该通道连接到催化第二步的活性位点

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摘要

KdsC, the third enzyme of the 3-deoxy-d-manno-octulosonic acid (KDO) biosynthetic pathway, catalyzes a substrate-specific reaction to hydrolyze 3-deoxy-d-manno-octulosonate 8-phosphate to generate a molecule of KDO and phosphate. KdsC is a phosphatase that belongs to the C0 subfamily of the HAD superfamily. To understand the molecular basis for the substrate specificity of this tetrameric enzyme, the crystal structures of KdsC from Moraxella catarrhalis (Mc-KdsC) with several combinations of ligands, namely metal ion, citrate and products, were determined. Various transition states of the enzyme have been captured in these crystal forms. The ligand-free and ligand-bound crystal forms reveal that the binding of ligands does not cause any specific conformational changes in the active site. However, the electron-density maps clearly showed that the conformation of KDO as a substrate is different from the conformation adopted by KDO when it binds as a cleaved product. Furthermore, structural evidence for the existence of an intersubunit tunnel has been reported for the first time in the C0 subfamily of enzymes. A role for this tunnel in transferring water molecules from the interior of the tetrameric structure to the active-site cleft has been proposed. At the active site, water molecules are required for the formation of a water bridge that participates as a proton shuttle during the second step of the two-step phosphoryl-transfer reaction. In addition, as the KDO biosynthesis pathway is a potential antibacterial target, pharmacophore-based virtual screening was employed to identify inhibitor molecules for the Mc-KdsC enzyme.
机译:KdsC是3-deoxy-d-manno-octulosonic acid(KDO)生物合成途径的第三种酶,可催化特定于底物的反应,水解3-deoxy-d-manno-octulosonate 8-磷酸酯,从而生成KDO和磷酸盐。 KdsC是一种磷酸酶,属于HAD超家族的C0家族。为了了解该四聚酶底物特异性的分子基础,测定了卡他莫拉氏菌(Mc-KdsC)的KdsC的晶体结构,该配体具有多种配体组合,即金属离子,柠檬酸和产物。以这些晶体形式捕获了酶的各种过渡态。不含配体和配体结合的晶体形式表明,配体的结合不会在活性位点引起任何特定的构象变化。但是,电子密度图清楚地表明,作为底物的KDO构象与KDO作为裂解产物结合时所采用的构象不同。此外,在酶的C0亚家族中首次报道了存在亚基间通道的结构证据。已经提出了该隧道在将水分子从四聚体结构内部转移到活性部位裂缝中的作用。在活性部位,需要水分子来形成水桥,该水桥在两步磷酸基转移反应的第二步中作为质子穿梭参与。此外,由于KDO生物合成途径是潜在的抗菌靶标,因此采用基于药效团的虚拟筛选来鉴定Mc-KdsC酶的抑制剂分子。

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