Mamat Uwe, Schmidt Helgo, Munoz Eva, Lindner Buko, Fukase Koichi, Hanuszkiewicz Anna, Wu Jing, Meredith Timothy C, Woodard Ronald W, Hilgenfeld Rolf, Mesters Jeroen R, Holst Otto
Divisions of Structural Biochemistry, D-23845 Borstel, Germany.
Divisions of Structural Biochemistry, D-23845 Borstel, Germany; Biochemistry, Center for Structural and Cell Biology in Medicine, University of Lübeck, D-23538 Lübeck, Germany.
J Biol Chem. 2009 Aug 14;284(33):22248-22262. doi: 10.1074/jbc.M109.033308. Epub 2009 Jun 22.
The hyperthermophile Aquifex aeolicus belongs to the deepest branch in the bacterial genealogy. Although it has long been recognized that this unique Gram-negative bacterium carries genes for different steps of lipopolysaccharide (LPS) formation, data on the LPS itself or detailed knowledge of the LPS pathway beyond the first committed steps of lipid A and 3-deoxy-D-manno-oct-2-ulosonic acid (Kdo) synthesis are still lacking. We now report the functional characterization of the thermostable Kdo transferase WaaA from A. aeolicus and provide evidence that the enzyme is monofunctional. Compositional analysis and mass spectrometry of purified A. aeolicus LPS, showing the incorporation of a single Kdo residue as an integral component of the LPS, implicated a monofunctional Kdo transferase in LPS biosynthesis of A. aeolicus. Further, heterologous expression of the A. aeolicus waaA gene in a newly constructed Escherichia coli DeltawaaA suppressor strain resulted in synthesis of lipid IVA precursors substituted with one Kdo sugar. When highly purified WaaA of A. aeolicus was subjected to in vitro assays using mass spectrometry for detection of the reaction products, the enzyme was found to catalyze the transfer of only a single Kdo residue from CMP-Kdo to differently modified lipid A acceptors. The Kdo transferase was capable of utilizing a broad spectrum of acceptor substrates, whereas surface plasmon resonance studies indicated a high selectivity for the donor substrate.
嗜热栖热菌属于细菌谱系中最深的分支。尽管人们早就认识到这种独特的革兰氏阴性菌携带参与脂多糖(LPS)形成不同步骤的基因,但关于LPS本身的数据或除脂质A和3-脱氧-D-甘露糖-2-辛酮酸(Kdo)合成的首个关键步骤之外的LPS途径的详细知识仍然缺乏。我们现在报告了来自嗜热栖热菌的耐热Kdo转移酶WaaA的功能特性,并提供证据表明该酶是单功能的。对纯化的嗜热栖热菌LPS进行的组成分析和质谱分析表明,单个Kdo残基作为LPS的一个组成部分被掺入,这表明嗜热栖热菌的LPS生物合成中存在一种单功能的Kdo转移酶。此外,嗜热栖热菌waaA基因在新构建的大肠杆菌DeltawaaA抑制菌株中的异源表达导致合成了被一个Kdo糖取代的脂质IVA前体。当使用质谱法对嗜热栖热菌高度纯化的WaaA进行体外检测以检测反应产物时,发现该酶仅催化从CMP-Kdo向不同修饰的脂质A受体转移单个Kdo残基。该Kdo转移酶能够利用多种受体底物,而表面等离子体共振研究表明其对供体底物具有高选择性。