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上皮细胞中的极性信号。

Polarity signals in epithelial cells.

作者信息

Rodriguez-Boulan E, Zurzolo C

机构信息

Department of Cell Biology, Cornell University Medical College, New York, NY 10021.

出版信息

J Cell Sci Suppl. 1993;17:9-12. doi: 10.1242/jcs.1993.supplement_17.2.

Abstract

In simple epithelia, specialized vectorial functions such as transport and secretion are made possible by the segregation of proteins and lipids into opposite surface domains. This polarized distribution results from selective delivery to and retention at the appropriate domain. In the case of direct delivery, the sorting site for apical and basolateral proteins is the trans-Golgi network (TGN) where they are incorporated into distinct apical and basolateral vesicles that are targeted to the respective surfaces. The machinery that controls this simple process is in fact rather complicated. It involves many different steps from the recognition event (between 'sorting signal(s)' and 'sorting receptor(s)' to the formation of the vesicles, their budding, and the docking to the specialized plasma membrane domain. Here we summarize the latest developments in the sorting of apical and basolateral proteins, focusing in particular on the signals that are involved in this process and the current hypotheses about the mechanisms responsible for it, in both epithelia and in non-polarized cells.

摘要

在单层上皮细胞中,诸如运输和分泌等特殊的向量功能是通过蛋白质和脂质分离到相对的表面区域而实现的。这种极性分布源于选择性地输送到合适的区域并在该区域保留。在直接输送的情况下,顶端和基底外侧蛋白质的分选位点是反式高尔基体网络(TGN),在那里它们被整合到不同的顶端和基底外侧囊泡中,这些囊泡靶向各自的表面。控制这个简单过程的机制实际上相当复杂。它涉及从识别事件(“分选信号”和“分选受体”之间)到囊泡形成、出芽以及对接至特殊质膜区域的许多不同步骤。在这里,我们总结了顶端和基底外侧蛋白质分选的最新进展,特别关注参与这一过程的信号以及目前关于上皮细胞和非极化细胞中负责该过程机制的假说。

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