首页> 美国卫生研究院文献>Journal of Bacteriology >Biochemical Characterization of dTDP-d-Qui4N and dTDP-d-Qui4NAc Biosynthetic Pathways in Shigella dysenteriae Type 7 and Escherichia coli O7
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Biochemical Characterization of dTDP-d-Qui4N and dTDP-d-Qui4NAc Biosynthetic Pathways in Shigella dysenteriae Type 7 and Escherichia coli O7

机译:痢疾志贺氏菌7型和大肠杆菌O7中dTDP-d-Qui4N和dTDP-d-Qui4NAc生物合成途径的生化特性

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摘要

O-antigen variation due to the presence of different types of sugars and sugar linkages is important for the survival of bacteria threatened by host immune systems. The O antigens of Shigella dysenteriae type 7 and Escherichia coli O7 contain 4-(N-acetylglycyl)amino-4,6-dideoxy-d-glucose (d-Qui4NGlyAc) and 4-acetamido-4,6-dideoxy-d-glucose (d-Qui4NAc), respectively, which are sugars not often found in studied polysaccharides. In this study, we characterized the biosynthetic pathways for dTDP-d-Qui4N and dTDP-d-Qui4NAc (the nucleotide-activated precursors of d-Qui4NGlyAc and d-Qui4NAc in O antigens). Predicted genes involved in the synthesis of the two sugars were cloned, and the gene products were overexpressed and purified as His-tagged fusion proteins. In vitro enzymatic reactions were carried out using the purified proteins, and the reaction products were analyzed by capillary electrophoresis, electrospray ionization-mass spectrometry, and nuclear magnetic resonance spectroscopy. It is shown that in S. dysenteriae type 7 and E. coli O7, dTDP-d-Qui4N is synthesized from α-d-glucose-1-phosphate in three reaction steps catalyzed by glucose-1-phosphate thymidyltransferase (RmlA), dTDP-d-glucose 4,6-dehydratase (RmlB), and dTDP-4-keto-6-deoxy-d-glucose aminotransferase (VioA). An additional acetyltransferase (VioB) catalyzes the conversion of dTDP-d-Qui4N into dTDP-d-Qui4NAc in E. coli O7. Kinetic parameters and some other properties of VioA and VioB are described and differences between VioA proteins from S. dysenteriae type 7 (VioAD7) and E. coli O7 (VioAO7) discussed. To our knowledge, this is the first time that functions of VioA and VioB have been biochemically characterized. This study provides valuable enzyme sources for the production of dTDP-d-Qui4N and dTDP-d-Qui4NAc, which are potentially useful in the pharmaceutical industry for drug development.
机译:由于存在不同类型的糖和糖键而导致的O抗原变异对于受宿主免疫系统威胁的细菌的存活很重要。痢疾志贺氏菌7型和大肠杆菌O7的O抗原含有4-(N-乙酰基甘氨酰)氨基-4,6-二脱氧-d-葡萄糖(d-Qui4NGlyAc)和4-乙酰氨基-4,6-二脱氧-d-葡萄糖(d-Qui4NAc)分别是在研究的多糖中不常见的糖。在这项研究中,我们表征了dTDP-d-Qui4N和dTDP-d-Qui4NAc(O抗原中d-Qui4NGlyAc和d-Qui4NAc的核苷酸激活前体)的生物合成途径。克隆了参与这两种糖合成的预测基因,并且基因产物被过表达并纯化为带有His标签的融合蛋白。使用纯化的蛋白质进行体外酶促反应,并通过毛细管电泳,电喷雾电离质谱和核磁共振波谱分析反应产物。结果表明,在痢疾链球菌7型和大肠杆菌O7中,dTDP-d-Qui4N由α-d-葡萄糖-1-磷酸在3个步骤中由葡萄糖-1-磷酸胸苷转移酶(RmlA)dTDP催化合成。 -d-葡萄糖4,6-脱水酶(RmlB)和dTDP-4-keto-6-脱氧-d-葡萄糖氨基转移酶(VioA)。另一种乙酰基转移酶(VioB)在大肠杆菌O7中催化dTDP-d-Qui4NAc转化为dTDP-d-Qui4NAc。描述了VioA和VioB的动力学参数和其他一些特性,并讨论了痢疾链球菌7型(VioAD7)和大肠杆菌O7(VioAO7)的VioA蛋白之间的差异。据我们所知,这是VioA和VioB的功能首次被生物化学表征。这项研究为生产dTDP-d-Qui4N和dTDP-d-Qui4NAc提供了宝贵的酶源,它们在制药工业中可能对药物开发有用。

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