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网格蛋白介导的途径将上皮顶端连接蛋白内吞至一个独特的储存区室。

Endocytosis of epithelial apical junctional proteins by a clathrin-mediated pathway into a unique storage compartment.

作者信息

Ivanov Andrei I, Nusrat Asma, Parkos Charles A

机构信息

Epithelial Pathobiology Research Unit, Department of Pathology and Laboratory Medicine, Emory University, Atlanta, Georgia 30322, USA.

出版信息

Mol Biol Cell. 2004 Jan;15(1):176-88. doi: 10.1091/mbc.e03-05-0319. Epub 2003 Oct 3.

Abstract

The adherens junction (AJ) and tight junction (TJ) are key regulators of epithelial polarity and barrier function. Loss of epithelial phenotype is accompanied by endocytosis of AJs and TJs via unknown mechanisms. Using a model of calcium depletion, we defined the pathway of internalization of AJ and TJ proteins (E-cadherin, p120 and beta-catenins, occludin, JAM-1, claudins 1 and 4, and ZO-1) in T84 epithelial cells. Proteinase protection assay and immunocytochemistry revealed orchestrated internalization of AJs and TJs into a subapical cytoplasmic compartment. Disruption of caveolae/lipid rafts did not prevent endocytosis, nor did caveolin-1 colocalize with internalized junctional proteins. Furthermore, AJ and TJ proteins did not colocalize with the macropinocytosis marker dextran. Inhibitors of clathrin-mediated endocytosis blocked internalization of AJs and TJs, and junctional proteins colocalized with clathrin and alpha-adaptin. AJ and TJ proteins were observed to enter early endosomes followed by movement to organelles that stained with syntaxin-4 but not with markers of late and recycling endosomes, lysosomes, or Golgi. These results indicate that endocytosis of junctional proteins is a clathrin-mediated process leading into a unique storage compartment. Such mechanisms may mediate the disruption of intercellular contacts during normal tissue remodeling and in pathology.

摘要

黏着连接(AJ)和紧密连接(TJ)是上皮细胞极性和屏障功能的关键调节因子。上皮细胞表型的丧失伴随着AJ和TJ通过未知机制的内吞作用。利用钙耗竭模型,我们确定了T84上皮细胞中AJ和TJ蛋白(E-钙黏蛋白、p120和β-连环蛋白、闭合蛋白、JAM-1、紧密连接蛋白1和4以及ZO-1)的内化途径。蛋白酶保护试验和免疫细胞化学显示AJ和TJ有组织地内化到顶端下细胞质区室。小窝/脂筏的破坏并不能阻止内吞作用,小窝蛋白-1也不与内化的连接蛋白共定位。此外,AJ和TJ蛋白也不与巨吞饮标记物葡聚糖共定位。网格蛋白介导的内吞作用抑制剂可阻断AJ和TJ的内化,连接蛋白与网格蛋白和α-衔接蛋白共定位。观察到AJ和TJ蛋白进入早期内体,随后转移到用Syntaxin-4染色但不用晚期和再循环内体、溶酶体或高尔基体标记物染色的细胞器。这些结果表明连接蛋白的内吞作用是一个由网格蛋白介导的过程,导致进入一个独特的储存区室。这种机制可能介导正常组织重塑和病理过程中细胞间接触的破坏。

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