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Release of ATP from retinal pigment epithelial cells involves both CFTR and vesicular transport.

机译:从视网膜色素上皮细胞释放ATP涉及CFTR和囊泡运输。

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摘要

The retinal pigment epithelium (RPE) faces the photoreceptor outer segments and regulates the composition of the interstitial subretinal space. ATP enhances fluid movement from the subretinal space across the RPE. RPE cells can themselves release ATP, but the mechanisms and polarity of this release are unknown. The RPE expresses the cystic fibrosis transmembrane conductance regulator (CFTR), and CFTR is associated with ATP release in other epithelial cells. However, an increasing number of reports have suggested that the exocytotic pathway contributes to release. In the present study, we examined the involvement of CFTR and the vesicular pathway in ATP release from RPE cells. Release from cultured human ARPE-19 cells and across the apical membrane of fresh bovine RPE cells in an eyecup was studied. A cAMP cocktail to activate CFTR triggered ATP release from fresh and cultured RPE cells. Release from both RPE preparations was largely prevented by the broad-acting blocker glibenclamide and the specific thiazolidinone CFTR inhibitor CFTR-172. The block by CFTR-172 was enhanced by preincubation and prevented ATP release with 3.5 microM IC(50). The rise in intracellular Ca(2+) accompanying hypotonic challenge was prevented by CFTR-172. The vesicular transport inhibitor brefeldin A prevented ATP release after stimulation with both hypotonic and cAMP conditions, suggesting vesicular insertion was also involved. These results show an intimate involvement of CFTR in ATP release from RPE cells which can autostimulate receptors on the apical membrane to modify Ca(2+) signaling. The requirement for both CFTR and vesicular transport pathways suggests vesicular insertion of CFTR may underlie the release of ATP.
机译:视网膜色素上皮(RPE)面向感光器外部部分,并调节间质性视网膜下间隙的组成。 ATP增强了从视网膜下间隙穿过RPE的液体运动。 RPE细胞本身可以释放ATP,但这种释放的机制和极性尚不清楚。 RPE表达囊性纤维化跨膜电导调节剂(CFTR),并且CFTR与其他上皮细胞中的ATP释放相关。但是,越来越多的报告表明胞吐途径有助于释放。在本研究中,我们检查了CFTR和水泡途径与RPE细胞ATP释放的关系。研究了从培养的人ARPE-19细胞和新鲜牛RPE细胞的顶膜在眼杯中的释放。激活CFTR的cAMP鸡尾酒触发了新鲜培养的RPE细胞释放ATP。广谱阻断剂格列本脲和特定的噻唑烷酮CFTR抑制剂CFTR-172很大程度上阻止了两种RPE制剂的释放。通过预孵育增强了CFTR-172的阻滞作用,并通过3.5 microM IC(50)阻止了ATP的释放。 CFTR-172阻止伴随低渗挑战的细胞内Ca(2+)的上升。在低渗和cAMP条件下刺激后,水泡运输抑制剂布雷菲德菌素A阻止了ATP的释放,表明水泡插入也参与其中。这些结果表明CFTR密切参与RPE细胞的ATP释放,它可以自动刺激顶膜上的受体来修饰Ca(2+)信号传导。 CFTR和囊泡运输途径的需求表明,CFTR的囊泡插入可能是ATP释放的基础。

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