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破解囊性纤维化中F508del的错误折叠。

Decoding F508del misfolding in cystic fibrosis.

作者信息

Wang Xiaodong Robert, Li Chenglong

机构信息

Department of Pharmaceutical, Social and Administrative Sciences, McWhorter School of Pharmacy, Samford University, 800 Lakeshore Drive, Birmingham, AL 35229, USA.

Division of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Biomolecules. 2014 May 6;4(2):498-509. doi: 10.3390/biom4020498.

Abstract

The functional deficiency of the cystic fibrosis transmembrane conductance regulator (CFTR), a plasma membrane chloride channel, leads to the development of cystic fibrosis. The deletion of a phenylalanine at residue 508 (F508del) is the most common cause of CFTR misfolding leading to the disease. The F508del misfolding originates in the first nucleotide-binding domain (NBD1), which induces a global conformational change in CFTR through NBD1's interactions with other domains. Such global misfolding produces a mutant chloride channel that is impaired in exocytic trafficking, peripheral stability, and channel gating. The nature and atomic details of F508del misfolding have been subject to extensive research during the past decade. Current data support a central role for NBD1 in F508del misfolding and rescue. Many cis-acting NBD1 second-site mutations rescue F508del misfolding in the context of full-length CFTR. While some of these mutations appear to specifically counteract the F508del-induced misfolding, others release certain inherent conformational constraints of the human wild-type CFTR. Several small-molecule correctors were recently found to act on key interdomain interfaces of F508del CFTR. Potential rational approaches have been proposed in an attempt to develop highly effective small molecule modulators that improve the cell surface functional expression of F508del CFTR.

摘要

囊性纤维化跨膜传导调节因子(CFTR)是一种质膜氯离子通道,其功能缺陷会导致囊性纤维化的发生。第508位残基苯丙氨酸的缺失(F508del)是导致CFTR错误折叠从而引发该疾病的最常见原因。F508del错误折叠起源于第一个核苷酸结合结构域(NBD1),它通过NBD1与其他结构域的相互作用诱导CFTR发生整体构象变化。这种整体错误折叠产生了一种突变的氯离子通道,其在胞吐转运、外周稳定性和通道门控方面存在缺陷。在过去十年中,F508del错误折叠的性质和原子细节受到了广泛研究。目前的数据支持NBD1在F508del错误折叠和挽救中起核心作用。许多顺式作用的NBD1第二位点突变在全长CFTR的背景下挽救了F508del错误折叠。虽然其中一些突变似乎专门抵消了F508del诱导的错误折叠,但其他突变则释放了人类野生型CFTR的某些固有构象限制。最近发现几种小分子校正剂作用于F508del CFTR的关键结构域间界面。已经提出了潜在的合理方法,试图开发出能改善F508del CFTR细胞表面功能表达的高效小分子调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d1d/4101494/51219b6a156b/biomolecules-04-00498-g001.jpg

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