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本文引用的文献

1
Targeting autophagy as a novel strategy for facilitating the therapeutic action of potentiators on ΔF508 cystic fibrosis transmembrane conductance regulator.靶向自噬作为一种新策略,以增强对 ΔF508 囊性纤维化跨膜电导调节剂的治疗作用。
Autophagy. 2012 Nov;8(11):1657-72. doi: 10.4161/auto.21483. Epub 2012 Aug 9.
2
Long-term CFTR inhibition modulates 15d-prostaglandin J2 in human pulmonary cells.长期 CFTR 抑制调节人肺细胞中的 15d-前列腺素 J2。
Int J Biochem Cell Biol. 2012 Jun;44(6):1009-18. doi: 10.1016/j.biocel.2012.03.010. Epub 2012 Mar 28.
3
CFTR: folding, misfolding and correcting the ΔF508 conformational defect.CFTR:折叠、错误折叠和纠正 ΔF508 构象缺陷。
Trends Mol Med. 2012 Feb;18(2):81-91. doi: 10.1016/j.molmed.2011.10.003. Epub 2011 Dec 3.
4
Correction of the F508del-CFTR protein processing defect in vitro by the investigational drug VX-809.通过研究药物 VX-809 纠正体外 F508del-CFTR 蛋白加工缺陷。
Proc Natl Acad Sci U S A. 2011 Nov 15;108(46):18843-8. doi: 10.1073/pnas.1105787108. Epub 2011 Oct 5.
5
OCRL controls trafficking through early endosomes via PtdIns4,5P₂-dependent regulation of endosomal actin.OCRL 通过 PtdIns4,5P₂ 依赖性调节内体肌动蛋白控制早期内体运输。
EMBO J. 2011 Oct 4;30(24):4970-85. doi: 10.1038/emboj.2011.354.
6
Protein quality control at the plasma membrane.质膜的蛋白质质量控制。
Curr Opin Cell Biol. 2011 Aug;23(4):483-91. doi: 10.1016/j.ceb.2011.04.012. Epub 2011 May 14.
7
Emergent properties of proteostasis in managing cystic fibrosis.应对囊性纤维化中蛋白质稳态的涌现特性。
Cold Spring Harb Perspect Biol. 2011 Feb 1;3(2):a004499. doi: 10.1101/cshperspect.a004499.
8
Modeling general proteostasis: proteome balance in health and disease.建模一般蛋白质稳态:健康和疾病中的蛋白质组平衡。
Curr Opin Cell Biol. 2011 Apr;23(2):126-34. doi: 10.1016/j.ceb.2010.11.001. Epub 2010 Dec 3.
9
Targeting CFTR: how to treat cystic fibrosis by CFTR-repairing therapies.靶向 CFTR:CFTR 修复疗法治疗囊性纤维化。
Curr Drug Targets. 2011 May;12(5):683-93. doi: 10.2174/138945011795378586.
10
Functional interaction between sequestosome-1/p62 and autophagy-linked FYVE-containing protein WDFY3 in human osteoclasts.人破骨细胞中自噬相关 FYVE 结构域蛋白 WDFY3 与 sequestosome-1/p62 的功能相互作用。
Biochem Biophys Res Commun. 2010 Nov 19;402(3):543-8. doi: 10.1016/j.bbrc.2010.10.076. Epub 2010 Oct 29.

囊性纤维化跨膜电导调节蛋白与疾病相关的蛋白稳态调控。

Disease-relevant proteostasis regulation of cystic fibrosis transmembrane conductance regulator.

机构信息

Division of Genetics and Cell Biology, San Raffaele Scientific Institute, European Institute for Research in Cystic Fibrosis, Milan 20132, Italy.

出版信息

Cell Death Differ. 2013 Aug;20(8):1101-15. doi: 10.1038/cdd.2013.46. Epub 2013 May 17.

DOI:10.1038/cdd.2013.46
PMID:23686137
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3705602/
Abstract

Mismanaged protein trafficking by the proteostasis network contributes to several conformational diseases, including cystic fibrosis, the most frequent lethal inherited disease in Caucasians. Proteostasis regulators, as cystamine, enable the beneficial action of cystic fibrosis transmembrane conductance regulator (CFTR) potentiators in ΔF508-CFTR airways beyond drug washout. Here we tested the hypothesis that functional CFTR protein can sustain its own plasma membrane (PM) stability. Depletion or inhibition of wild-type CFTR present in bronchial epithelial cells reduced the availability of the small GTPase Rab5 by causing Rab5 sequestration within the detergent-insoluble protein fraction together with its accumulation in aggresomes. CFTR depletion decreased the recruitment of the Rab5 effector early endosome antigen 1 to endosomes, thus reducing the local generation of phosphatidylinositol-3-phosphate. This diverts recycling of surface proteins, including transferrin receptor and CFTR itself. Inhibiting CFTR function also resulted in its ubiquitination and interaction with SQSTM1/p62 at the PM, favoring its disposal. Addition of cystamine prevented the recycling defect of CFTR by enhancing BECN1 expression and reducing SQSTM1 accumulation. Our results unravel an unexpected link between CFTR protein and function, the latter regulating the levels of CFTR surface expression in a positive feed-forward loop, and highlight CFTR as a pivot of proteostasis in bronchial epithelial cells.

摘要

错误折叠的蛋白质在伴侣蛋白体系中的运输出现问题会导致多种构象疾病,包括囊性纤维化,这是白种人中最常见的致命遗传性疾病。伴侣蛋白体系调节剂,如半胱胺,可使囊性纤维化跨膜电导调节因子(CFTR)增强剂在 ΔF508-CFTR 气道中的有益作用持续存在,而不会因药物冲洗而失效。在这里,我们测试了这样一个假设,即功能性 CFTR 蛋白可以维持其自身质膜(PM)的稳定性。在支气管上皮细胞中耗尽或抑制野生型 CFTR,会导致 Rab5 被隔离在去污剂不溶性蛋白部分内,并与聚集体一起积累,从而减少小 GTPase Rab5 的可用性。CFTR 耗竭会减少 Rab5 效应物早期内体抗原 1 到内体的募集,从而减少局部产生的磷脂酰肌醇-3-磷酸。这会使包括转铁蛋白受体和 CFTR 自身在内的表面蛋白的再循环发生偏离。抑制 CFTR 功能也会导致其泛素化,并与质膜上的 SQSTM1/p62 相互作用,从而促进其降解。半胱胺的添加通过增强 BECN1 的表达和减少 SQSTM1 的积累,防止了 CFTR 的再循环缺陷。我们的研究结果揭示了 CFTR 蛋白与其功能之间的一个意想不到的联系,后者通过正反馈回路调节 CFTR 表面表达水平,凸显了 CFTR 在支气管上皮细胞中作为伴侣蛋白体系稳定的关键作用。