首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Ion Channels and Transporters in Lung Function and Disease: Carvedilol binding to β2-adrenergic receptors inhibits CFTR-dependent anion secretion in airway epithelial cells
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Ion Channels and Transporters in Lung Function and Disease: Carvedilol binding to β2-adrenergic receptors inhibits CFTR-dependent anion secretion in airway epithelial cells

机译:肺功能和疾病中的离子通道和转运蛋白:卡维地洛与β2-肾上腺素受体的结合抑制气道上皮细胞中CFTR依赖的阴离子分泌

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摘要

Carvedilol functions as a nonselective β-adrenergic receptor (AR)/α1-AR antagonist that is used for treatment of hypertension and heart failure. Carvedilol has been shown to function as an inverse agonist, inhibiting G protein activation while stimulating β-arrestin-dependent signaling and inducing receptor desensitization. In the present study, short-circuit current (Isc) measurements using human airway epithelial cells revealed that, unlike β-AR agonists, which increase Isc, carvedilol decreases basal and 8-(4-chlorophenylthio)adenosine 3′,5′-cyclic monophosphate-stimulated current. The decrease in Isc resulted from inhibition of the cystic fibrosis transmembrane conductance regulator (CFTR). The carvedilol effect was abolished by pretreatment with the β2-AR antagonist ICI-118551, but not the β1-AR antagonist atenolol or the α1-AR antagonist prazosin, indicating that its inhibitory effect on Isc was mediated through interactions with apical β2-ARs. However, the carvedilol effect was blocked by pretreatment with the microtubule-disrupting compound nocodazole. Furthermore, immunocytochemistry experiments and measurements of apical CFTR expression by Western blot analysis of biotinylated membranes revealed a decrease in the level of CFTR protein in monolayers treated with carvedilol but no significant change in monolayers treated with epinephrine. These results demonstrate that carvedilol binding to apical β2-ARs inhibited CFTR current and transepithelial anion secretion by a mechanism involving a decrease in channel expression in the apical membrane.
机译:卡维地洛起非选择性β-肾上腺素受体(AR)/α1-AR拮抗剂的作用,用于治疗高血压和心力衰竭。已显示卡维地洛起反向激动剂的作用,抑制G蛋白活化,同时刺激β-arrestin依赖性信号传导并诱导受体脱敏。在本研究中,使用人气道上皮细胞进行的短路电流(Isc)测量表明,与增加Isc的β-AR激动剂不同,卡维地洛减少了基础和8-(4-氯苯硫基)腺苷3',5'-环单磷酸盐刺激的电流。 Isc的减少是由于抑制了囊性纤维化跨膜电导调节剂(CFTR)。卡维地洛的作用是通过用β2-AR拮抗剂ICI-118551预处理而取消的,但没有通过β1-AR拮抗剂阿替洛尔或α1-AR拮抗剂哌唑嗪的预处理来消除,这表明其对Isc的抑制作用是通过与顶端β2-ARs相互作用介导的。然而,卡维地洛的作用被破坏微管的化合物诺考达唑预处理所阻断。此外,免疫细胞化学实验和通过生物素化膜的Western印迹分析测量根尖CFTR的表达,发现卡维地洛治疗的单层CFTR蛋白水平降低,而肾上腺素治疗的单层CFTR蛋白水平无明显变化。这些结果表明卡维地洛与顶端β2-ARs的结合通过涉及减少顶端膜中通道表达的机制抑制了CFTR电流和跨上皮阴离子的分泌。

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