Ishiyama Noboru, Creuzenet Carole, Lam Joseph S, Berghuis Albert M
Department of Biochemistry, McGill University, Montreal, Quebec H3A 1A4, Canada.
J Biol Chem. 2004 May 21;279(21):22635-42. doi: 10.1074/jbc.M401642200. Epub 2004 Mar 10.
The O antigen of lipopolysaccharide in Gram-negative bacteria plays a critical role in bacterium-host interactions, and for pathogenic bacteria it is a major virulence factor. In Pseudomonas aeruginosa serotype O6 one of the initial steps in O-antigen biosynthesis is catalyzed by a saccharide epimerase, WbpP. WbpP is a member of the UDP-hexose 4-epimerase family of enzymes and exists as a homo-dimer. This enzyme preferentially catalyzes the conversion between UDP-GlcNAc and UDPGalNAc above UDP-Glc and UDP-Gal, using NAD(+) as a cofactor. The crystal structures of WbpP in complex with cofactor and either UDP-Glc or UDP-GalNAc were determined at 2.5 and 2.1 A, respectively, which represents the first structural studies of a genuine UDP-GlcNAc 4-epimerase. These structures in combination with complementary mutagenesis studies suggest that the basis for the differential substrate specificity of WbpP is a consequence of the presence of a pliable solvent network in the active site. This information allows for a comprehensive analysis of the relationship between sequence and substrate specificity for UDP-hexose 4-epimerases and enables the formulation of consensus sequences that predict substrate specificity of UDP-hexose 4-epimerases yet to be biochemically characterized. Furthermore, the examination indicates that as little as one residue can dictate substrate specificity. Nonetheless, phylogenetic analysis suggests that this substrate specificity is an evolutionary and highly conserved property within UDP-hexose 4-epimerases.
革兰氏阴性菌中脂多糖的O抗原在细菌与宿主的相互作用中起着关键作用,对于病原菌而言,它是一种主要的毒力因子。在铜绿假单胞菌O6血清型中,O抗原生物合成的初始步骤之一由一种糖差向异构酶WbpP催化。WbpP是UDP-己糖4-差向异构酶家族的一员,以同型二聚体形式存在。该酶优先催化UDP-GlcNAc和UDPGalNAc之间的转化,而不是UDP-Glc和UDP-Gal之间的转化,使用NAD(+)作为辅因子。分别在2.5 Å和2.1 Å分辨率下测定了与辅因子以及UDP-Glc或UDP-GalNAc结合的WbpP的晶体结构,这代表了对真正的UDP-GlcNAc 4-差向异构酶的首次结构研究。这些结构与互补的诱变研究表明,WbpP不同底物特异性的基础是活性位点中存在柔韧的溶剂网络。这些信息有助于全面分析UDP-己糖4-差向异构酶的序列与底物特异性之间的关系,并能够制定预测尚未进行生化表征的UDP-己糖4-差向异构酶底物特异性的共有序列。此外,研究表明,仅有一个残基就能决定底物特异性。尽管如此,系统发育分析表明,这种底物特异性在UDP-己糖4-差向异构酶中是一种进化上高度保守的特性。