Poschet Jens F, Timmins Graham S, Taylor-Cousar Jennifer L, Ornatowski Wojciech, Fazio Joseph, Perkett Elizabeth, Wilson Kari R, Yu Hongwei D, de Jonge Hugo R, Deretic Vojo
Department of Molecular Genetics and Microbiology, University of New Mexico School of Medicine, Albuquerque, New Mexico 87131, USA.
Am J Physiol Lung Cell Mol Physiol. 2007 Sep;293(3):L712-9. doi: 10.1152/ajplung.00314.2006. Epub 2007 Jun 22.
The CFTR gene encodes a chloride channel with pleiotropic effects on cell physiology and metabolism. Here, we show that increasing cGMP levels to inhibit epithelial Na(+) channel in cystic fibrosis (CF) respiratory epithelial cells corrects several aspects of the downstream pathology in CF. Cell culture models, using a range of CF cell lines and primary cells, showed that complementary pharmacological approaches to increasing intracellular cGMP, by elevating guanyl cyclase activity though reduced nitric oxide, addition of cell-permeable cGMP analogs, or inhibition of phosphodiesterase 5 corrected multiple aspects of the CF pathological cascade. These included correction of defective protein glycosylation, bacterial adherence, and proinflammatory responses. Furthermore, pharmacological inhibition of phosphodiesterase 5 in tissues ex vivo or in animal models improved transepithelial currents across nasal mucosae from transgenic F508del Cftr(tm1Eur) mice and reduced neutrophil infiltration on bacterial aerosol challenge in Pseudomonas aeruginosa-susceptible DBA/2 mice. Our findings define phosphodiesterase 5 as a specific target for correcting a number of previously disconnected defects in the CF respiratory tract, now linked through this study. Our study suggests that phosphodiesterase 5 inhibition provides an opportunity for simultaneous and concerted correction of seemingly disparate complications in CF.
CFTR基因编码一种对细胞生理和代谢具有多效性作用的氯离子通道。在此,我们表明,在囊性纤维化(CF)呼吸道上皮细胞中提高cGMP水平以抑制上皮钠通道可纠正CF下游病理的多个方面。使用一系列CF细胞系和原代细胞的细胞培养模型表明,通过降低一氧化氮来提高鸟苷酸环化酶活性、添加细胞可渗透的cGMP类似物或抑制磷酸二酯酶5等互补药理学方法可纠正CF病理级联反应的多个方面。这些方面包括纠正有缺陷的蛋白质糖基化、细菌黏附以及促炎反应。此外,在离体组织或动物模型中对磷酸二酯酶5进行药理学抑制可改善转基因F508del Cftr(tm1Eur)小鼠鼻黏膜的跨上皮电流,并减少铜绿假单胞菌易感DBA/2小鼠在细菌气溶胶攻击后的中性粒细胞浸润。我们的研究结果将磷酸二酯酶5定义为纠正CF呼吸道中一些先前不相关缺陷的特定靶点,这些缺陷现在通过本研究联系在一起。我们的研究表明,抑制磷酸二酯酶5为同时并协同纠正CF中看似不同的并发症提供了机会。