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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis of 4-methylumbelliferyl α-D-mannopyranosyl-(1→6)- β-D-mannopyranoside and development of a coupled fluorescent assay for GH125 exo-α-1,6-mannosidases
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Synthesis of 4-methylumbelliferyl α-D-mannopyranosyl-(1→6)- β-D-mannopyranoside and development of a coupled fluorescent assay for GH125 exo-α-1,6-mannosidases

机译:4-甲基伞形酮基α-D-甘露吡喃糖基-(1→6)-β-D-甘露吡喃糖苷的合成及GH125exo-α-1,6-甘露糖苷酶的耦合荧光分析方法的建立

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摘要

Certain bacterial pathogens possess a repertoire of carbohydrate processing enzymes that process host N-linked glycans and many of these enzymes are required for full virulence of harmful human pathogens such as Clostridium perfringens and Streptococcus pneumoniae. One bacterial carbohydrate processing enzyme that has been studied is the pneumococcal virulence factor SpGH125 from S. pneumoniae and its homologue, CpGH125, from C. perfringens. These exo-α-1,6-mannosidases from glycoside hydrolase family 125 show poor activity toward aryl α-mannopyranosides. To circumvent this problem, we describe a convenient synthesis of the fluorogenic disaccharide substrate 4-methylumbelliferone α-d-mannopyranosyl-(1→6)-β-d- mannopyranoside. We show this substrate can be used in a coupled fluorescent assay by using β-mannosidases from either Cellulomonas fimi or Helix pomatia as the coupling enzyme. We find that this disaccharide substrate is processed much more efficiently than aryl α-mannopyranosides by CpGH125, most likely because inclusion of the second mannose residue makes this substrate more like the natural host glycan substrates of this enzyme, which enables it to bind better. Using this sensitive coupled assay, the detailed characterization of these metal-independent exo-α-mannosidases GH125 enzymes should be possible, as should screening chemical libraries for inhibitors of these virulence factors.
机译:某些细菌病原体拥有加工宿主N-连接聚糖的碳水化合物加工酶库,而这些酶中的许多酶对于完全危害人类有害病原体(如产气荚膜梭菌和肺炎链球菌)是必需的。已研究的一种细菌性碳水化合物加工酶是肺炎链球菌的肺炎球菌毒力因子SpGH125及其产气荚膜梭菌的同系物CpGH125。来自糖苷水解酶家族125的这些exo-α-1,6-甘露糖苷酶显示出对芳基α-甘露糖吡喃糖苷的不良活性。为了解决这个问题,我们描述了一种方便的方法合成荧光二糖底物4-甲基伞形酮α-d-甘露吡喃糖基-(1→6)-β-d-甘露吡喃糖苷。我们显示该底物可通过使用来自纤维单胞菌或螺旋果树的β-甘露糖苷酶作为偶联酶用于偶联荧光测定。我们发现,CpGH125可以比芳基α-甘露糖吡喃糖苷更有效地处理该二糖底物,这很可能是因为第二甘露糖残基的加入使该底物更像该酶的天然宿主聚糖底物,使其能够更好地结合。使用这种灵敏的耦合分析,应该可能对这些金属独立的外切-α-甘露糖苷酶GH125酶进行详细的表征,以及筛选化学库中这些毒力因子抑制剂的方法。

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