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重新审视 CFTR 相互作用:旧伙伴和新角色。

Revisiting CFTR Interactions: Old Partners and New Players.

机构信息

BioISI-Biosystems and Integrative Sciences Institute, Faculty of Sciences, University of Lisboa, 1749-016 Lisboa, Portugal.

Marsico Lung Institute and Cystic Fibrosis Research Center, School of Medicine, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Int J Mol Sci. 2021 Dec 7;22(24):13196. doi: 10.3390/ijms222413196.

Abstract

Remarkable progress in CFTR research has led to the therapeutic development of modulators that rescue the basic defect in cystic fibrosis. There is continuous interest in studying CFTR molecular disease mechanisms as not all cystic fibrosis patients have a therapeutic option available. Addressing the basis of the problem by comprehensively understanding the critical molecular associations of CFTR interactions remains key. With the availability of CFTR modulators, there is interest in comprehending which interactions are critical to rescue CFTR and which are altered by modulators or CFTR mutations. Here, the current knowledge on interactions that govern CFTR folding, processing, and stability is summarized. Furthermore, we describe protein complexes and signal pathways that modulate the CFTR function. Primary epithelial cells display a spatial control of the CFTR interactions and have become a common system for preclinical and personalized medicine studies. Strikingly, the novel roles of CFTR in development and differentiation have been recently uncovered and it has been revealed that specific CFTR gene interactions also play an important role in transcriptional regulation. For a comprehensive understanding of the molecular environment of CFTR, it is important to consider CFTR mutation-dependent interactions as well as factors affecting the CFTR interactome on the cell type, tissue-specific, and transcriptional levels.

摘要

CFTR 研究的显著进展促使了调节剂的治疗开发,这些调节剂可以挽救囊性纤维化的基本缺陷。由于并非所有囊性纤维化患者都有治疗选择,因此人们一直有兴趣研究 CFTR 分子疾病机制。通过全面了解 CFTR 相互作用的关键分子关联来解决根本问题仍然是关键。随着 CFTR 调节剂的出现,人们有兴趣了解哪些相互作用对于挽救 CFTR 至关重要,以及哪些相互作用被调节剂或 CFTR 突变改变。在这里,总结了控制 CFTR 折叠、加工和稳定性的相互作用的现有知识。此外,我们还描述了调节 CFTR 功能的蛋白质复合物和信号通路。原代上皮细胞显示 CFTR 相互作用的空间控制,并且已经成为临床前和个性化医学研究的常用系统。值得注意的是,CFTR 在发育和分化中的新作用最近被揭示,并且已经表明特定的 CFTR 基因相互作用也在转录调控中发挥重要作用。为了全面了解 CFTR 的分子环境,重要的是要考虑 CFTR 突变依赖性相互作用以及影响细胞类型、组织特异性和转录水平上 CFTR 相互作用组的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf7b/8703571/3907fc9c771a/ijms-22-13196-g001.jpg

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