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Simultaneous determination of nucleotide sugars with ion-pair reversed-phase HPLC.

机译:用离子对反相HPLC同时测定核苷酸糖。

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Nucleotide sugars are important in determining cell surface glycoprotein glycosylation, which can modulate cellular properties such as growth and arrest. We have developed a conventional HPLC method for simultaneous determination of nucleotide sugars. A mixture of nucleotide sugars (CMP-NeuAc, UDP-Gal, UDP-Glc, UDP-GalNAc, UDP-GlcNAc, GDP-Man, GDP-Fuc and UDP-GlcUA) and relevant nucleotides were perfectly separated in an optimized ion-pair reversed-phase mode using Inertsil ODS-4 and ODS-3 columns. The newly developed method enabled us to determine the nucleotide sugars in cellular extracts from 1 x 10(6) cells in a single run. We applied this method to characterize nucleotide sugar levels in breast and pancreatic cancer cell lines and revealed that the abundance of UDP-GlcNAc, UDP-GalNAc, UDP-GlcUA and GDP-Fuc were a cell-type-specific feature. To determine the physiological significance of changes in nucleotide sugar levels, we analyzed their changes by glucose deprivation and found that the determination of nucleotide sugar levels provided us with valuable information with respect to studying the overview of cellular glycosylation status.
机译:核苷酸糖在确定细胞表面糖蛋白糖基化方面很重要,糖基化可以调节细胞特性,例如生长和停滞。我们已经开发了用于同时测定核苷酸糖的常规HPLC方法。核苷酸糖(CMP-NeuAc,UDP-Gal,UDP-Glc,UDP-GalNAc,UDP-GlcNAc,GDP-Man,GDP-Fuc和UDP-GlcUA)和相关核苷酸的混合物在优化的离子对中完美分离使用Inertsil ODS-4和ODS-3色谱柱的反相模式。新开发的方法使我们能够一次确定1 x 10(6)个细胞的细胞提取物中的核苷酸糖。我们应用此方法来表征乳腺癌和胰腺癌细胞系中的核苷酸糖水平,并发现UDP-GlcNAc,UDP-GalNAc,UDP-GlcUA和GDP-Fuc的丰度是特定于细胞类型的特征。为了确定核苷酸糖水平变化的生理学意义,我们通过葡萄糖剥夺分析了它们的变化,发现确定核苷酸糖水平为我们提供了有关研究细胞糖基化状态概述的有价值的信息。

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