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The PIKfyve Inhibitor YM201636 Blocks the Continuous Recycling of the Tight Junction Proteins Claudin-1 and Claudin-2 in MDCK cells

机译:PIKfyve抑制剂YM201636阻止MDCK细胞中紧密连接蛋白Claudin-1和Claudin-2的连续回收

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摘要

Tight junctions mediate the intercellular diffusion barrier found in epithelial tissues but they are not static complexes; instead there is rapid movement of individual proteins within the junctions. In addition some tight junction proteins are continuously being endocytosed and recycled back to the plasma membrane. Understanding the dynamic behaviour of tight junctions is important as they are altered in a range of pathological conditions including cancer and inflammatory bowel disease. In this study we investigate the effect of treating epithelial cells with a small molecule inhibitor (YM201636) of the lipid kinase PIKfyve, a protein which is involved in endocytic trafficking. We show that MDCK cells treated with YM201636 accumulate the tight junction protein claudin-1 intracellularly. In contrast YM201636 did not alter the localization of other junction proteins including ZO-1, occludin and E-cadherin. A biochemical trafficking assay was used to show that YM201636 inhibited the endocytic recycling of claudin-1, providing an explanation for the intracellular accumulation. Claudin-2 was also found to constantly recycle in confluent MDCK cells and treatment with YM201636 blocked this recycling and caused accumulation of intracellular claudin-2. However, claudin-4 showed negligible endocytosis and no detectable intracellular accumulation occurred following treatment with YM201636, suggesting that not all claudins show the same rate of endocytic trafficking. Finally, we show that, consistent with the defects in claudin trafficking, incubation with YM201636 delayed formation of the epithelial permeability barrier. Therefore, YM201636 treatment blocks the continuous recycling of claudin-1/claudin-2 and delays epithelial barrier formation.
机译:紧密连接介导上皮组织中的细胞间扩散屏障,但它们不是静态复合物。相反,各个蛋白质在连接处快速移动。另外,一些紧密连接蛋白被连续内吞并再循环回到质膜。了解紧密连接的动态行为很重要,因为它们会在一系列病理状况(包括癌症和炎症性肠病)中发生改变。在这项研究中,我们研究了脂质激酶PIKfyve的小分子抑制剂(YM201636)处理上皮细胞的效果,PIKfyve是一种参与内吞运输的蛋白质。我们显示,用YM201636处理的MDCK细胞在细胞内积累紧密连接蛋白claudin-1。相反,YM201636不会改变其他连接蛋白(包括ZO-1,occludin和E-cadherin)的定位。生化运输分析用于显示YM201636抑制claudin-1的内吞再循环,为细胞内积累提供了解释。还发现Claudin-2在融合的MDCK细胞中不断循环,用YM201636处理阻止了这种循环并导致细胞内claudin-2积累。但是,claudin-4的内吞作用可忽略不计,用YM201636治疗后未发生可检测的细胞内蓄积,这表明并非所有claudin都显示出相同的内吞运输率。最后,我们表明,与claudin转运中的缺陷一致,与YM201636一起孵育可延迟上皮通透性屏障的形成。因此,YM201636处理阻止claudin-1 / claudin-2的连续回收并延迟上皮屏障的形成。

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