首页> 美国卫生研究院文献>Molecular Cellular Proteomics : MCP >Characteristic Changes in Cell Surface Glycosylation Accompany Intestinal Epithelial Cell (IEC) Differentiation: High Mannose Structures Dominate the Cell Surface Glycome of Undifferentiated Enterocytes
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Characteristic Changes in Cell Surface Glycosylation Accompany Intestinal Epithelial Cell (IEC) Differentiation: High Mannose Structures Dominate the Cell Surface Glycome of Undifferentiated Enterocytes

机译:细胞表面糖基化伴随肠道上皮细胞(IEC)分化的特征变化:高甘露糖结构主导未分化肠上皮细胞的细胞表面糖脂

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摘要

Changes in cell surface glycosylation occur during the development and differentiation of cells and have been widely correlated with the progression of several diseases. Because of their structural diversity and sensitivity to intra- and extracellular conditions, glycans are an indispensable tool for analyzing cellular transformations. Glycans present on the surface of intestinal epithelial cells (IEC) mediate interactions with billions of native microorganisms, which continuously populate the mammalian gut. A distinct feature of IECs is that they differentiate as they migrate upwards from the crypt base to the villus tip. In this study, nano-LC/ESI QTOF MS profiling was used to characterize the changes in glycosylation that correspond to Caco-2 cell differentiation. As Caco-2 cells differentiate to form a brush border membrane, a decrease in high mannose type glycans and a concurrent increase in fucosylated and sialylated complex/hybrid type glycans were observed. At day 21, when cells appear to be completely differentiated, remodeling of the cell surface glycome ceases. Differential expression of glycans during IEC maturation appears to play a key functional role in regulating the membrane-associated hydrolases and contributes to the mucosal surface innate defense mechanisms. Developing methodologies to rapidly identify changes in IEC surface glycans may lead to a rapid screening approach for a variety of disease states affecting the GI tract.
机译:细胞表面糖基化的变化发生在细胞的发育和分化过程中,并已与几种疾病的进展广泛相关。由于它们的结构多样性以及对细胞内和细胞外条件的敏感性,聚糖是分析细胞转化的必不可少的工具。肠上皮细胞(IEC)表面上存在的聚糖介导与数十亿天然微生物的相互作用,而天然微生物不断地在哺乳动物肠道中繁殖。 IEC的显着特征是,它们在从隐窝基部向上迁移到绒毛尖端时会有所区别。在这项研究中,纳米LC / ESI QTOF MS分析用于表征与Caco-2细胞分化相对应的糖基化变化。当Caco-2细胞分化形成刷状缘膜时,观察到高甘露糖型聚糖减少,岩藻糖基化和唾液酸化复合/杂合型聚糖同时增加。在第21天,当细胞似乎完全分化时,细胞表面糖原的重塑停止。 IEC成熟过程中聚糖的差异表达似乎在调节膜相关水解酶中起关键功能作用,并有助于粘膜表面先天防御机制。开发快速识别IEC表面聚糖变化的方法学可能会导致针对影响胃肠道的多种疾病状态的快速筛查方法。

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