Xiantang L, Dorscheid D R, Wojcik K R, White S R
Department of Pathology and Committee on Comparative Medicine and Pathology, The University of Chicago, IL 60637, USA.
Histochem J. 2000 Apr;32(4):207-16. doi: 10.1023/a:1004046816516.
Glycosylated structures on the cell surface have a role in cell adhesion, migration, and proliferation. Repair of the airway epithelium after injury requires each of these processes, but the expression of cell surface glycosylation of airway epithelial cells after injury is not known. We examined cell surface glycosylation using lectin-binding profiles of normal and repairing epithelia in Hartley guinea pigs from 0 to 14 days after mechanical injury. The epithelium regenerated completely-over 7 days. In normal trachea, galactose- or galactosamine-specific lectins (14 of 20 tested) labelled epithelial cells, but fucose, mannose, and other sugar-specific lectins (15 tested) did not. GSA-2, a glucosamine-specific lectin, labelled epithelial cells weakly in uninjured tracheas, but intense labelling was noted in basal and non-ciliated columnar cells adjacent to the injury site over 3 h to 14 days after injury. Labelling of these cells peaked at 12 h and 5 days after injury respectively. Similar patterns were seen with lectins AlloA and HAA but not with CPA during repair. The binding of the lectin DSA to proteins collected from primary cultures of airway epithelial cells decreased substantially after treatment for 24 h with either transforming growth factor-beta or interleukin-1beta, but that of the CPA lectin did not. We demonstrate changes in glycosylation profiles of airway epithelial cells coordinate with repair after mechanical injury. These changes may be useful to study mechanisms by which repair is regulated.
细胞表面的糖基化结构在细胞黏附、迁移和增殖中发挥作用。气道上皮损伤后的修复需要这些过程中的每一个,但损伤后气道上皮细胞表面糖基化的表达尚不清楚。我们利用机械损伤后0至14天的Hartley豚鼠正常和修复上皮的凝集素结合谱来检测细胞表面糖基化。上皮在7天内完全再生。在正常气管中,半乳糖或半乳糖胺特异性凝集素(20种测试中有14种)标记上皮细胞,但岩藻糖、甘露糖和其他糖特异性凝集素(15种测试)则不标记。GSA-2是一种葡糖胺特异性凝集素,在未损伤的气管中对上皮细胞的标记较弱,但在损伤后3小时至14天,损伤部位相邻的基底细胞和无纤毛柱状细胞中可见强烈标记。这些细胞的标记分别在损伤后12小时和5天达到峰值。在修复过程中,凝集素AlloA和HAA呈现相似模式,但CPA则不然。用转化生长因子-β或白细胞介素-1β处理24小时后,凝集素DSA与气道上皮细胞原代培养物中收集的蛋白质的结合显著降低,但CPA凝集素的结合则没有。我们证明了气道上皮细胞糖基化谱变化与机械损伤后的修复过程相协调。这些变化可能有助于研究修复调节机制。