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囊性纤维化跨膜传导调节蛋白(CFTR)在细胞内区室中的分布及作用

The Distribution and Role of the CFTR Protein in the Intracellular Compartments.

作者信息

Lukasiak Agnieszka, Zajac Miroslaw

机构信息

Department of Physics and Biophysics, Institute of Biology, Warsaw University of Life Sciences-SGGW, 02-776 Warsaw, Poland.

出版信息

Membranes (Basel). 2021 Oct 22;11(11):804. doi: 10.3390/membranes11110804.

Abstract

Cystic fibrosis is a hereditary disease that mainly affects secretory organs in humans. It is caused by mutations in the gene encoding CFTR with the most common phenylalanine deletion at position 508. CFTR is an anion channel mainly conducting Cl across the apical membranes of many different epithelial cells, the impairment of which causes dysregulation of epithelial fluid secretion and thickening of the mucus. This, in turn, leads to the dysfunction of organs such as the lungs, pancreas, kidney and liver. The CFTR protein is mainly localized in the plasma membrane; however, there is a growing body of evidence that it is also present in the intracellular organelles such as the endosomes, lysosomes, phagosomes and mitochondria. Dysfunction of the CFTR protein affects not only the ion transport across the epithelial tissues, but also has an impact on the proper functioning of the intracellular compartments. The review aims to provide a summary of the present state of knowledge regarding CFTR localization and function in intracellular compartments, the physiological role of this localization and the consequences of protein dysfunction at cellular, epithelial and organ levels. An in-depth understanding of intracellular processes involved in CFTR impairment may reveal novel opportunities in pharmacological agents of cystic fibrosis.

摘要

囊性纤维化是一种主要影响人类分泌器官的遗传性疾病。它由编码CFTR的基因突变引起,最常见的是第508位苯丙氨酸缺失。CFTR是一种阴离子通道,主要介导氯离子跨多种不同上皮细胞的顶端膜转运,其功能受损会导致上皮液体分泌失调和黏液增厚。这进而导致肺、胰腺、肾脏和肝脏等器官功能障碍。CFTR蛋白主要定位于质膜;然而,越来越多的证据表明它也存在于细胞内细胞器中,如内体、溶酶体、吞噬体和线粒体。CFTR蛋白功能障碍不仅影响离子跨上皮组织的转运,还对细胞内区室的正常功能产生影响。本综述旨在总结目前关于CFTR在细胞内区室中的定位和功能、这种定位的生理作用以及蛋白质功能障碍在细胞、上皮和器官水平的后果的知识现状。深入了解CFTR损伤所涉及的细胞内过程可能会揭示囊性纤维化药物治疗的新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a280/8618639/fae15c278c4e/membranes-11-00804-g001.jpg

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