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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Establishment of plasma membrane polarity in mammary epithelial cells correlates with changes in prolactin trafficking and in annexin VI recruitment to membranes
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Establishment of plasma membrane polarity in mammary epithelial cells correlates with changes in prolactin trafficking and in annexin VI recruitment to membranes

机译:乳腺上皮细胞质膜极性的建立与催乳素运输和膜联蛋白VI募集的变化有关

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Mammary epithelial cells (MEC) of lactating animals ferry large amounts of milk constituents in vesicular structures which have mostly been characterized by morphological approaches (Ollivier-Bousquet, 1998). Recently, we have shown that under conditions of lipid deprivation, perturbed prolactin traffic paralleled changes in the membrane phospholipid composition and in the cytosol versus membrane distribution of annexin VI (Ollivier-Bousquet et al., 1997). To obtain additional information on the membrane events involved in the vesicular transport of the hormone to the apical pole of the cell, we conducted a biochemical study on prolactin-containing vesicles in MEC at two different stages of differentiation. We first showed that MEC of pregnant and lactating rabbits exhibited membrane characteristics of non-polarized and polarized cells respectively, using annexin IV and the α-6 subunit of integrin as membrane markers. Incubation of both cell types with biotinylated prolactin for 1 h at 15 ℃, followed by a 10-min chase at 37 ℃ revealed that prolactin transport was activated upon MEC membrane polarization. This was confirmed by subcellular fractionation of prolactin-containing vesicles on discontinuous density gradients. In non-polarized MEC, ~(125)I-prolactin was mainly recovered in gradient fractions enriched with endocytotic vesicles either after incubation at 15 ℃ or after a 10-min chase at 37 ℃. In contrast, in polarized MEC, the hormone switched from endocytotic compartments to a fraction enriched in exocytotic clathrin-coated vesicles during the 10-min chase at 37 ℃. Association of annexin VI to prolactin carriers was next studied in both non-polarized and polarized cells. Membrane compartments collected at each gradient interface were solubilized under mild conditions by Triton X-100 (TX100) and the distribution of annexin VI in TX100-insoluble and TX100-soluble fractions was analyzed by Western blotting. Upon MEC polarization, the amount of annexin VI recovered in TX100-insoluble fractions changed. Quite interestingly, it increased in a membrane fraction enriched with endocytotic clathrin-coated vesicles, suggesting that annexin VI may act as a sorting signal in prolactin transport.
机译:泌乳动物的乳腺上皮细胞(MEC)会在水泡结构中运送大量的牛奶成分,这些成分大多以形态学方法为特征(Ollivier-Bousquet,1998)。最近,我们已经表明,在脂质剥夺的条件下,受干扰的催乳激素运输与膜联蛋白VI的膜磷脂组成和胞质相对膜分布的变化平行(Ollivier-Bousquet等,1997)。为了获得有关激素将水泡转运到细胞顶极的膜事件的更多信息,我们对分化中两个不同阶段的MEC中含催乳素的水泡进行了生化研究。我们首先显示,使用膜联蛋白IV和整联蛋白的α-6亚基作为膜标记物,怀孕和哺乳期兔子的MEC分别显示非极化和极化细胞的膜特征。将两种细胞类型与生物素化催乳素在15℃下孵育1小时,然后在37℃追逐10分钟,发现催乳素转运在MEC膜极化后被激活。通过不连续密度梯度上含催乳素的囊泡的亚细胞分级证实了这一点。在非极化的MEC中,〜(125)I-催乳素主要在15℃下孵育或在37℃下追赶10分钟后,以富含内吞小泡的梯度级分回收。相反,在极化的MEC中,在37℃追赶10分钟时,激素从胞吞区转移到富含胞吞网格蛋白包被的囊泡的部分。接下来在非极化和极化细胞中研究膜联蛋白VI与催乳素载体的关联。在温和条件下,通过Triton X-100(TX100)溶解在每个梯度界面收集的膜区室,并通过Western印迹分析膜联蛋白VI在TX100不溶和TX100可溶级分中的分布。经MEC极化后,TX100不溶级分中回收的膜联蛋白VI的量发生了变化。非常有趣的是,它在富含内吞网格蛋白包被的囊泡的膜级分中增加,表明膜联蛋白VI可能是催乳素转运中的分类信号。

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