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ΔF508 CFTR Surface Stability Is Regulated by DAB2 and CHIP-Mediated Ubiquitination in Post-Endocytic Compartments

机译:ΔF508CFTR表面稳定性受DAB2和CHIP介导的内吞后舱室泛素化的调节

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摘要

The ΔF508 mutant form of the cystic fibrosis transmembrane conductance regulator (ΔF508 CFTR) that is normally degraded by the ER-associated degradative pathway can be rescued to the cell surface through low-temperature (27°C) culture or small molecular corrector treatment. However, it is unstable on the cell surface, and rapidly internalized and targeted to the lysosomal compartment for degradation. To understand the mechanism of this rapid turnover, we examined the role of two adaptor complexes (AP-2 and Dab2) and three E3 ubiquitin ligases (c-Cbl, CHIP, and Nedd4-2) on low-temperature rescued ΔF508 CFTR endocytosis and degradation in human airway epithelial cells. Our results demonstrate that siRNA depletion of either AP-2 or Dab2 inhibits ΔF508 CFTR endocytosis by 69% and 83%, respectively. AP-2 or Dab2 depletion also increases the rescued protein half-life of ΔF508 CFTR by ~18% and ~91%, respectively. In contrast, the depletion of each of the E3 ligases had no effect on ΔF508 CFTR endocytosis, whereas CHIP depletion significantly increased the surface half-life of ΔF508 CFTR. To determine where and when the ubiquitination occurs during ΔF508 CFTR turnover, we monitored the ubiquitination of rescued ΔF508 CFTR during the time course of CFTR endocytosis. Our results indicate that ubiquitination of the surface pool of ΔF508 CFTR begins to increase 15 min after internalization, suggesting that CFTR is ubiquitinated in a post-endocytic compartment. This post-endocytic ubiquination of ΔF508 CFTR could be blocked by either inhibiting endocytosis, by siRNA knockdown of CHIP, or by treating cells with the CFTR corrector, VX-809. Our results indicate that the post-endocytic ubiquitination of CFTR by CHIP is a critical step in the peripheral quality control of cell surface ΔF508 CFTR.
机译:通常通过ER相关的降解途径降解的囊性纤维化跨膜电导调节剂(ΔF508CFTR)的ΔF508突变体可以通过低温(27°C)培养或小分子校正剂处理恢复到细胞表面。然而,它在细胞表面不稳定,并迅速内在化并靶向溶酶体区室进行降解。为了了解这种快速更新的机制,我们研究了两种衔接子复合物(AP-2和Dab2)和三种E3泛素连接酶(c-Cbl,CHIP和Nedd4-2)在低温拯救的ΔF508CFTR内吞作用中的作用,以及人气道上皮细胞的降解我们的结果表明,AP-2或Dab2的siRNA耗竭分别将ΔF508CFTR内吞作用抑制了69%和83%。 AP-2或Dab2消耗也分别使ΔF508CFTR的挽救蛋白半衰期分别增加了〜18%和〜91%。相反,每种E3连接酶的耗竭对ΔF508CFTR内吞作用没有影响,而CHIP耗竭则显着增加了ΔF508CFTR的表面半衰期。为了确定在ΔF508CFTR周转期间泛素化在何时何地发生,我们在CFTR内吞作用的过程中监测了获救的ΔF508CFTR的泛素化。我们的结果表明,内化后15分钟,ΔF508CFTR的表面池的泛素化开始增加,这表明CFTR在内吞后区室中泛素化了。可以通过抑制内吞作用,通过CHIP的siRNA敲低或通过使用CFTR校正剂VX-809处理细胞来阻止ΔF508CFTR的这种内吞后泛素化。我们的结果表明,通过CHIP进行CFTR的内吞后泛素化是细胞表面ΔF508CFTR周边质量控制中的关键步骤。

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