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锌摄取体 ZIP2/SLC39A2 剪接变异导致锌缺乏,进而引起气道上皮细胞囊性纤维化相关黏蛋白 MUC5AC 过度分泌。

Zinc Deficiency via a Splice Switch in Zinc Importer ZIP2/SLC39A2 Causes Cystic Fibrosis-Associated MUC5AC Hypersecretion in Airway Epithelial Cells.

机构信息

Department of Molecular Medicine, Graduate School of Pharmaceutical Sciences, Kumamoto University, 5-1 Oe-Honmachi, Chuo-ku, Kumamoto 862-0973, Japan; Program for Leading Graduate Schools "HIGO (Health life science: Interdisciplinary and Glocal Oriented) Program", Kumamoto University, 5-1 Oe-Honmachi, Chuo-ku, Kumamoto 862-0973, Japan.

Laboratory of Pharmacology, Division of Life Science, Faculty of Pharmaceutical Sciences, Sojo University, 4-22-1 Ikeda, Nishi-ku, Kumamoto 860-0082, Japan.

出版信息

EBioMedicine. 2018 Jan;27:304-316. doi: 10.1016/j.ebiom.2017.12.025. Epub 2017 Dec 20.

Abstract

Airway mucus hyperproduction and fluid imbalance are important hallmarks of cystic fibrosis (CF), the most common life-shortening genetic disorder in Caucasians. Dysregulated expression and/or function of airway ion transporters, including cystic fibrosis transmembrane conductance regulator (CFTR) and epithelial sodium channel (ENaC), have been implicated as causes of CF-associated mucus hypersecretory phenotype. However, the contributory roles of other substances and transporters in the regulation of CF airway pathogenesis remain unelucidated. Here, we identified a novel connection between CFTR/ENaC expression and the intracellular Zn concentration in the regulation of MUC5AC, a major secreted mucin that is highly expressed in CF airway. CFTR-defective and ENaC-hyperactive airway epithelial cells specifically and highly expressed a unique, alternative splice isoform of the zinc importer ZIP2/SLC39A2 (ΔC-ZIP2), which lacks the C-terminal domain. Importantly, ΔC-ZIP2 levels correlated inversely with wild-type ZIP2 and intracellular Zn levels. Moreover, the splice switch to ΔC-ZIP2 as well as decreased expression of other ZIPs caused zinc deficiency, which is sufficient for induction of MUC5AC; while ΔC-ZIP2 expression per se induced ENaC expression and function. Thus, our findings demonstrate that the novel splicing switch contributes to CF lung pathology via the novel interplay of CFTR, ENaC, and ZIP2 transporters.

摘要

气道黏液高分泌和液体失衡是囊性纤维化(CF)的重要标志,CF 是白种人中最常见的缩短寿命的遗传疾病。气道离子转运体(包括囊性纤维化跨膜电导调节因子(CFTR)和上皮钠通道(ENaC))的表达和/或功能失调被认为是 CF 相关黏液高分泌表型的原因。然而,其他物质和转运体在 CF 气道发病机制中的调节作用仍不清楚。在这里,我们发现 CFTR/ENaC 表达与细胞内 Zn 浓度之间存在一个新的联系,在调节 CF 气道中高度表达的主要分泌黏蛋白 MUC5AC 方面。CFTR 缺陷和 ENaC 过度活跃的气道上皮细胞特异性且高度表达锌内流体 ZIP2/SLC39A2(ΔC-ZIP2)的一种独特的、选择性剪接异构体,该异构体缺乏 C 末端结构域。重要的是,ΔC-ZIP2 水平与野生型 ZIP2 和细胞内 Zn 水平呈负相关。此外,向 ΔC-ZIP2 的剪接转换以及其他 ZIPs 的表达减少导致锌缺乏,这足以诱导 MUC5AC 的产生;而 ΔC-ZIP2 的表达本身就诱导了 ENaC 的表达和功能。因此,我们的研究结果表明,新型剪接转换通过 CFTR、ENaC 和 ZIP2 转运体的新型相互作用促进 CF 肺部病理学的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d6/5828551/130a1a2da975/gr1.jpg

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