Phillips T E, Huet C, Bilbo P R, Podolsky D K, Louvard D, Neutra M R
Department of Anatomy and Cellular Biology, Harvard Medical School, Boston, Massachusetts.
Gastroenterology. 1988 Jun;94(6):1390-403. doi: 10.1016/0016-5085(88)90678-6.
HT29-18N2 (N2) cells, a subclone of the HT29 human colon carcinoma cell line, are shown in this report to be a model system for the study of human goblet cell differentiation and mucin secretion. Grown in the absence of glucose, these cells formed homogeneous epithelial monolayers of columnar cells with typical goblet cell morphology. Differentiation occurred on uncoated glass; laminin, fibronectin, or collagen type I or IV did not enhance differentiation. HT29-18N2 cells grown on uncoated or matrix-coated permeable filters formed differentiated monolayers, but mucin granules within some of these cells polarized along intraepithelial lumens. Polyclonal antibodies raised against purified human colonic mucin, and also a monoclonal antibody against a protease-sensitive epitope of human colonic mucin, stained secretory granules of all differentiated goblet cells within N2 cell monolayers but did not stain predifferentiated goblet cells lacking large secretory granules. Monoclonal antibodies against specific carbohydrate sequences of human mucins also failed to stain N2 cells before differentiation, but recognized varying fractions of differentiated N2 goblet cells. Autoradiographic visualization of radiolabeled glycoproteins demonstrated transport and secretion of N2 cell mucin granules. Cholinergic stimulation of differentiated N2 cell monolayers resulted in depletion of intracellular mucin granules.
HT29-18N2(N2)细胞是HT29人结肠癌细胞系的一个亚克隆,本报告显示其是用于研究人杯状细胞分化和粘蛋白分泌的模型系统。在无葡萄糖条件下培养时,这些细胞形成具有典型杯状细胞形态的柱状细胞均匀上皮单层。在未包被的玻璃上发生分化;层粘连蛋白、纤连蛋白或I型或IV型胶原并未增强分化。在未包被或基质包被的可渗透滤膜上生长的HT29-18N2细胞形成分化的单层,但其中一些细胞内的粘蛋白颗粒沿上皮内腔极化。针对纯化的人结肠粘蛋白产生的多克隆抗体,以及针对人结肠粘蛋白蛋白酶敏感表位的单克隆抗体,可对N2细胞单层内所有分化的杯状细胞的分泌颗粒进行染色,但不能对缺乏大分泌颗粒的预分化杯状细胞进行染色。针对人粘蛋白特定碳水化合物序列的单克隆抗体在分化前也不能对N2细胞进行染色,但可识别不同比例的分化N2杯状细胞。放射性标记糖蛋白的放射自显影显示了N2细胞粘蛋白颗粒的转运和分泌。对分化的N2细胞单层进行胆碱能刺激导致细胞内粘蛋白颗粒耗尽。