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脱氢木香内酯,一种倍半萜内酯,可激活野生型和ΔF508突变型CFTR氯离子通道。

Dehydrocostuslactone, a sesquiterpene lactone activates wild-type and ΔF508 mutant CFTR chloride channel.

作者信息

Wang Xue, Zhang Yao-Fang, Yu Bo, Yang Shuang, Luan Jian, Liu Xin, Yang Hong

机构信息

a School of life sciences, Liaoning Provincial Key Laboratory of Biotechnology and Drug Discovery, Liaoning Normal University , Dalian , 116081 , China.

出版信息

J Asian Nat Prod Res. 2013;15(8):855-66. doi: 10.1080/10286020.2013.804814. Epub 2013 Jun 25.

Abstract

Cystic fibrosis transmembrane conductance regulator (CFTR) represents the main cAMP-activated Cl⁻ channel expressed in the apical membrane of serous epithelial cells. Both deficiency and overactivation of CFTR may cause fluid and salt secretion related diseases. The aim of this study was to identify natural compounds that are able to stimulate wild-type (wt) and ΔF508 mutant CFTR channel activities in CFTR-expressing Fischer rat thyroid (FRT) cells. We found that dehydrocostuslactone [DHC, (3aS, 6aR, 9aR, 9bS)-decahydro-3,6,9-tris (methylene) azuleno [4,5-b] furan-2(3H)-one)] dose dependently potentiates both wt and ΔF508 mutant CFTR-mediated iodide influx in cell-based fluorescent assays and CFTR-mediated Cl⁻ currents in short-circuit current studies, and the activations could be reversed by the CFTR inhibitor CFTRinh-172. Maximal CFTR-mediated apical Cl⁻ current secretion in CFTR-expressing FRT cells was stimulated by 100 μM DHC. Determination of intracellular cAMP content showed that DHC modestly but significantly increased cAMP level in FRT cells, but cAMP elevation effects contributed little to DHC-stimulated iodide influx. DHC also stimulated CFTR-mediated apical Cl⁻ current secretion in FRT cells expressing ΔF508-CFTR. Subsequent studies demonstrated that activation of CFTR by DHC is forskolin dependent. DHC represents a new class of CFTR potentiators that may have therapeutic potential in CFTR-related diseases.

摘要

囊性纤维化跨膜传导调节因子(CFTR)是浆液上皮细胞顶端膜中表达的主要cAMP激活的Cl⁻通道。CFTR的缺陷和过度激活都可能导致与液体和盐分泌相关的疾病。本研究的目的是鉴定能够刺激表达CFTR的Fischer大鼠甲状腺(FRT)细胞中野生型(wt)和ΔF508突变体CFTR通道活性的天然化合物。我们发现脱氢木香内酯[DHC,(3aS, 6aR, 9aR, 9bS)-十氢-3,6,9-三(亚甲基)薁并[4,5-b]呋喃-2(3H)-酮]在基于细胞的荧光测定中剂量依赖性地增强wt和ΔF508突变体CFTR介导的碘流入,在短路电流研究中增强CFTR介导的Cl⁻电流,并且CFTR抑制剂CFTRinh-172可以逆转这种激活作用。100 μM DHC刺激了表达CFTR的FRT细胞中最大的CFTR介导的顶端Cl⁻电流分泌。细胞内cAMP含量的测定表明,DHC适度但显著地增加了FRT细胞中的cAMP水平,但cAMP升高对DHC刺激的碘流入贡献不大。DHC还刺激了表达ΔF508-CFTR的FRT细胞中CFTR介导的顶端Cl⁻电流分泌。随后的研究表明,DHC对CFTR的激活作用依赖于福斯高林。DHC代表了一类新的CFTR增强剂,可能在CFTR相关疾病中具有治疗潜力。

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