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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Chloride Intracellular Channel 4 Is Critical for the Epithelial Morphogenesis of RPE Cells and Retinal Attachment
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A Highlights from MBoC Selection: Chloride Intracellular Channel 4 Is Critical for the Epithelial Morphogenesis of RPE Cells and Retinal Attachment

机译:MBoC选择的亮点:氯化物细胞内通道4对于RPE细胞的上皮形态发生和视网膜附着至关重要

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摘要

Retinal detachment is a sight-threatening condition. The molecular mechanism underlying the adhesion between the RPE and photoreceptors is poorly understood because the intimate interactions between these two cell types are impossible to model and study in vitro. In this article, we show that chloride intracellular channel 4 (CLIC4) is enriched at apical RPE microvilli, which are interdigitated with the photoreceptor outer segment. We used a novel plasmid-based transfection method to cell-autonomously suppress CLIC4 in RPE in situ. CLIC4 silenced RPE cells exhibited a significant loss of apical microvilli and basal infoldings, reduced retinal adhesion, and epithelial-mesenchymal transition. Ectopically expressing ezrin failed to rescue the morphological changes exerted by CLIC4 silencing. Neural retinas adjacent to the CLIC4-suppressed RPE cells display severe dysplasia. Finally, a high level of aquaporin 1 unexpectedly appeared at the apical surfaces of CLIC4-suppressed RPE cells, together with a concomitant loss of basal surface expression of monocarboxylate transporter MCT3. Our results suggested that CLIC4 plays an important role in RPE-photoreceptor adhesion, perhaps by modulating the activity of cell surface channels/transporters. We propose that these changes may be attributable to subretinal fluid accumulation in our novel retinal detachment animal model.
机译:视网膜脱离是威胁视力的状况。 RPE和感光器之间粘附的分子机制了解甚少,因为这两种细胞类型之间的紧密相互作用无法在体外进行建模和研究。在本文中,我们显示氯化物细胞内通道4(CLIC4)在顶端RPE微绒毛上富集,其与感光细胞外段相互交叉。我们使用了一种新颖的基于质粒的转染方法来在细胞中自主抑制RPE中的CLIC4。 CLIC4沉默的RPE细胞表现出明显的根尖微绒毛和基底膜折叠,视网膜粘膜减少和上皮-间质转化。异位表达的ezrin无法挽救CLIC4沉默施加的形态变化。与CLIC4抑制的RPE细胞相邻的神经视网膜表现出严重的异型增生。最后,高水平的水通道蛋白1出乎意料地出现在CLIC4抑制的RPE细胞的顶表面,同时伴随着单羧酸盐转运蛋白MCT3的基础表面表达的丧失。我们的结果表明,CLIC4可能通过调节细胞表面通道/转运蛋白的活性在RPE感光细胞粘附中发挥重要作用。我们建议这些变化可能归因于我们新颖的视网膜脱离动物模型中的视网膜下积液。

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