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囊性纤维化气道中 MUC5B 粘蛋白的分泌后成熟缺陷。

Defective postsecretory maturation of MUC5B mucin in cystic fibrosis airways.

机构信息

Cystic Fibrosis and Pulmonary Diseases Research and Treatment Center, University of North Carolina at Chapel Hill, North Carolina, USA.

Department of Physiology and Biophysics, College of Medicine, University of South Alabama, Mobile, Alabama, USA.

出版信息

JCI Insight. 2017 Mar 23;2(6):e89752. doi: 10.1172/jci.insight.89752.

Abstract

In cystic fibrosis (CF), airway mucus becomes thick and viscous, and its clearance from the airways is impaired. The gel-forming mucins undergo an ordered "unpacking/maturation" process after granular release that requires an optimum postsecretory environment, including hydration and pH. We hypothesized that this unpacking process is compromised in the CF lung due to abnormal transepithelial fluid transport that reduces airway surface hydration and alters ionic composition. Using human tracheobronchial epithelial cells derived from non-CF and CF donors and mucus samples from human subjects and domestic pigs, we investigated the process of postsecretory mucin unfolding/maturation, how these processes are defective in CF airways, and the probable mechanism underlying defective unfolding. First, we found that mucins released into a normal lung environment transform from a compact granular form to a linear form. Second, we demonstrated that this maturation process is defective in the CF airway environment. Finally, we demonstrated that independent of HCO and pH levels, airway surface dehydration was the major determinant of this abnormal unfolding process. This defective unfolding/maturation process after granular release suggests that the CF extracellular environment is ion/water depleted and likely contributes to abnormal mucus properties in CF airways prior to infection and inflammation.

摘要

在囊性纤维化(CF)中,气道黏液变得浓稠且粘性,其从气道中的清除受到损害。胶状黏蛋白在颗粒释放后经历有序的“解包/成熟”过程,这需要一个最佳的分泌后环境,包括水合作用和 pH 值。我们假设,由于异常的跨上皮液体转运导致气道表面水合作用降低并改变离子组成,CF 肺部的这种解包过程受损。使用源自非 CF 和 CF 供体的人气管支气管上皮细胞以及来自人体和家猪的黏液样本,我们研究了分泌后黏蛋白展开/成熟的过程,这些过程在 CF 气道中如何存在缺陷,以及导致这种缺陷展开的可能机制。首先,我们发现黏液蛋白在正常的肺部环境中从致密的颗粒形式转变为线性形式。其次,我们证明了这个成熟过程在 CF 气道环境中存在缺陷。最后,我们证明,独立于 HCO 和 pH 值,气道表面脱水是导致这种异常展开过程的主要决定因素。颗粒释放后的这种缺陷展开/成熟过程表明,CF 细胞外环境中离子/水耗竭,这可能导致 CF 气道在感染和炎症之前出现异常的黏液特性。

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