Vectorial secretion by constitutive and regulated secretory pathways in mammary epithelial cells.

Epithelial cell biology Pub Date : 1995-01-01
D R Blatchford, K A Hendry, M D Turner, R D Burgoyne, C J Wilde
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Abstract

Lactating mammary epithelial cells synthesize large quantities of milk proteins, which they secrete vectorially at the apical membrane into the alveolar lumen of the gland. Recent work suggested that mammary protein secretion is not wholly constitutive, but may also occur in part through a regulated secretory pathway. This study used mouse mammary epithelial cells cultured on Engelbreth-Holm-Swarm (EHS) matrix to compare the proportions of basally and apically-directed proteins secreted constitutively or in a regulated manner. On EHS matrix, mammary cells formed mammospheres, multicellular structures enshrouded in matrix material, within which they became polarised, formed tight intercellular junctions, and secreted milk proteins vectorially. Protein secreted basolaterally was collected in culture medium, whereas apically-secreted milk proteins accumulated in a closed lumen within the mammosphere, and were recovered by EGTA treatment of the cells in situ. Protein secretion was measured by following the release of radiolabelled protein after pulse-labelling with [35S]-methionine. Basolateral and apical secretion of [35S]-protein appeared complete within 1 h of pulse-labelling, consistent with immediate secretion through constitutive secretory pathways. However, addition of the calcium ionophore ionomycin induced a second wave of secretion in both directions. Ca(2+)-stimulated secretion occurred within 15 min of ionomycin addition, doubled the extent of basolateral and apical secretion, but did not change the populations of proteins secreted. Ionomycin treatment did not affect mammosphere morphology or mammary cell ultrastructure. The results suggest that lactating mammary epithelial cells secrete proteins apically and basolaterally by two pathways, one a Ca(2+)-independent constitutive pathway, the other a regulated pathway stimulated by elevation of intracellular Ca2+.

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乳腺上皮细胞组成和调节分泌途径的载体分泌。
泌乳乳腺上皮细胞合成大量乳蛋白,并在顶膜向腺泡腔内分泌。最近的研究表明,乳腺蛋白分泌不是完全组成的,但也可能部分通过调节的分泌途径发生。本研究使用在Engelbreth-Holm-Swarm (EHS)基质上培养的小鼠乳腺上皮细胞,比较基底和根尖定向蛋白组成性或调节性分泌的比例。在EHS基质上,乳腺细胞形成乳球,多细胞结构包裹在基质材料中,它们在其中极化,形成紧密的细胞间连接,并向矢量分泌乳蛋白。在培养基中收集基底侧分泌的蛋白,而在乳腺球内的封闭腔中积累顶端分泌的乳蛋白,并通过EGTA原位处理细胞回收。用[35S]-蛋氨酸脉冲标记后,通过跟踪放射标记蛋白的释放来测量蛋白质分泌。[35S]-蛋白的基底外侧和根尖分泌在脉冲标记后1小时内完成,与通过组成性分泌途径立即分泌一致。然而,钙离子载体离子霉素的加入诱导了第二波两个方向的分泌。Ca(2+)刺激分泌发生在加入离子霉素后的15分钟内,基底外侧和根尖分泌量增加了一倍,但分泌的蛋白质数量没有改变。碘霉素治疗不影响乳腺球形态和乳腺细胞超微结构。结果表明,泌乳乳腺上皮细胞通过两种途径分泌蛋白质,一种是不依赖Ca(2+)的构成途径,另一种是受细胞内Ca2+升高刺激的调节途径。
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Vectorial secretion by constitutive and regulated secretory pathways in mammary epithelial cells. Characterization of Na,K-ATPase isoform expression and activity in MDCK and Caco-2 epithelial cells. Topical application of retinoic acid induces murine epidermal proliferation without reducing the cell cycle time. A bivariate BrdUrd/DNA flow cytometric study. Assessment of inflammatory events in epithelial permeability: a rapid screening method using fluorescein dextrans. Activators of protein kinase C but not of phospholipase C modulate adenylate cyclase-responses of normal pig epidermis.
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