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Biosynthesis of GDP-fucose and Other Sugar Nucleotides in the Blood Stages of Plasmodium falciparum

机译:恶性疟原虫血液阶段GDP-岩藻糖和其他糖核苷酸的生物合成

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摘要

Carbohydrate structures play important roles in many biological processes, including cell adhesion, cell-cell communication, and host-pathogen interactions. Sugar nucleotides are activated forms of sugars used by the cell as donors for most glycosylation reactions. Using a liquid chromatography-tandem mass spectrometry-based method, we identified and quantified the pools of UDP-glucose, UDP-galactose, UDP-N-acetylglucosamine, GDP-mannose, and GDP-fucose in Plasmodium falciparum intraerythrocytic life stages. We assembled these data with the in silico functional reconstruction of the parasite metabolic pathways obtained from the P. falciparum annotated genome, exposing new active biosynthetic routes crucial for further glycosylation reactions. Fucose is a sugar present in glycoconjugates often associated with recognition and adhesion events. Thus, the GDP-fucose precursor is essential in a wide variety of organisms. P. falciparum presents homologues of GDP-mannose 4,6-dehydratase and GDP-l-fucose synthase enzymes that are active in vitro, indicating that most GDP-fucose is formed by a de novo pathway that involves the bioconversion of GDP-mannose. Homologues for enzymes involved in a fucose salvage pathway are apparently absent in the P. falciparum genome. This is in agreement with in vivo metabolic labeling experiments showing that fucose is not significantly incorporated by the parasite. Fluorescence microscopy of epitope-tagged versions of P. falciparum GDP-mannose 4,6-dehydratase and GDP-l-fucose synthase expressed in transgenic 3D7 parasites shows that these enzymes localize in the cytoplasm of P. falciparum during the intraerythrocytic developmental cycle. Although the function of fucose in the parasite is not known, the presence of GDP-fucose suggests that the metabolite may be used for further fucosylation reactions.
机译:碳水化合物结构在许多生物过程中都起着重要作用,包括细胞粘附,细胞间通讯以及宿主与病原体的相互作用。糖核苷酸是糖的活化形式,被细胞用作大多数糖基化反应的供体。使用基于液相色谱-串联质谱的方法,我们确定并量化了恶性疟原虫红细胞内生命阶段中UDP-葡萄糖,UDP-半乳糖,UDP-N-乙酰氨基葡萄糖,GDP-甘露糖和GDP-岩藻糖的总量。我们将这些数据与从恶性疟原虫注释的基因组中获得的寄生虫代谢途径的计算机功能重建相结合,从而揭示了对进一步糖基化反应至关重要的新的活性生物合成途径。岩藻糖是存在于糖缀合物中的糖,通常与识别和粘附事件相关。因此,GDP岩藻糖前体在多种生物中至关重要。恶性疟原虫呈现出在体外具有活性的GDP-甘露糖4,6-脱水酶和GDP-1-岩藻糖合酶的同源物,表明大多数GDP-岩藻糖是由涉及GDP-甘露糖的生物转化的从头途径形成的。恶性疟原虫基因组中显然缺少与岩藻糖挽救途径有关的酶的同源物。这与体内代谢标记实验一致,后者表明岩藻糖没有被寄生虫明显掺入。在转基因3D7寄生虫中表达的恶性疟原虫表位标记版本的GDP-甘露糖4,6-脱水酶和GDP-1-岩藻糖合酶的荧光显微镜观察表明,这些酶在红细胞内发育周期中位于恶性疟原虫的细胞质中。尽管岩藻糖在寄生虫中的功能尚不清楚,但GDP-岩藻糖的存在表明,该代谢物可用于进一步的岩藻糖基化反应。

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