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Nonpolarized Cells Selectively Sort Apical Proteins from Cell Surface to a Novel Compartment but Lack Apical Retention Mechanisms

机译:非极化细胞选择性地将顶端蛋白从细胞表面分类到一个新的隔间但顶端保留机制不足

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摘要

Membrane trafficking is central to establishing and maintaining epithelial cell polarity. One open question is to what extent the mechanisms regulating membrane trafficking are conserved between nonpolarized and polarized cells. To answer this question, we examined the dynamics of domain-specific plasma membrane (PM) proteins in three classes of hepatic cells: polarized and differentiated WIF-B cells, nonpolarized and differentiated Fao cells, and nonpolarized and nondifferentiated Clone 9 cells. In nonpolarized cells, mature apical proteins were uniformly distributed in the PM. Surprisingly, they were also in an intracellular compartment. Double labeling revealed that the compartment contained only apical proteins. By monitoring the dynamics of antibody-labeled molecules in nonpolarized cells, we further found that apical proteins rapidly recycled between the compartment and PM. In contrast, the apical PM residents in polarized cells showed neither internalization nor return to the basolateral PM from which they had originally come. Cytochalasin D treatment of these polarized cells revealed that the retention mechanisms are actin dependent. We conclude from these data that both polarized and nonpolarized cells selectively sort apical proteins from the PM and transport them to specific, but different cellular locations. We propose that the intracellular recycling compartment in nonpolarized cells is an intermediate in apical surface formation.
机译:膜运输对于建立和维持上皮细胞极性至关重要。一个悬而未决的问题是,在非极化和极化细胞之间,调节膜运输的机制在何种程度上得以保留。为了回答这个问题,我们检查了三类肝细胞中的域特异性质膜(PM)蛋白的动力学:极化和分化的WIF-B细胞,非极化和分化的Fao细胞以及非极化和未分化的Clone 9细胞。在非极化细胞中,成熟的顶端蛋白质均匀地分布在PM中。令人惊讶的是,它们也位于细胞内隔室中。双重标记显示该区室仅包含顶端蛋白。通过监测非极化细胞中抗体标记分子的动力学,我们进一步发现,顶端蛋白在隔室和PM之间快速循环。相比之下,极化细胞中的顶端PM居民既没有内化,也没有回到它们最初来自的基底外侧PM。这些极化细胞的细胞松弛素D处理表明其保留机制是肌动蛋白依赖性的。从这些数据中我们得出结论,极化细胞和非极化细胞均会选择性地从PM中挑选出顶端蛋白,并将其转运至特定但不同的细胞位置。我们提出,非极化细胞的细胞内回收区是顶表面形成的中间产物。

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