Institut de Physiologie et Biologie Cellulaires, Université de Poitiers, CNRS UMR 6187, 40 Avenue du Recteur Pineau, 86022 Poitiers, France.
Eur Respir J. 2010 Aug;36(2):311-22. doi: 10.1183/09031936.00122509. Epub 2010 Jan 28.
One of the major therapeutic strategy in cystic fibrosis aims at developing modulators of cystic fibrosis transmembrane conductance regulator (CFTR) channels. We recently discovered methylglyoxal alpha-aminoazaheterocycle adducts, as a new family of CFTR inhibitors. In a structure-activity relationship study, we have now identified GPact-11a, a compound able not to inhibit but to activate CFTR. Here, we present the effect of GPact-11a on CFTR activity using in vitro (iodide efflux, fluorescence imaging and patch-clamp recordings), ex vivo (short-circuit current measurements) and in vivo (salivary secretion) experiments. We report that GPact-11a: 1) is an activator of CFTR in several airway epithelial cell lines; 2) activates rescued F508del-CFTR in nasal, tracheal, bronchial, pancreatic cell lines and in human CF ciliated epithelial cells, freshly dissociated from lung samples; 3) stimulates ex vivo the colonic chloride secretion and increases in vivo the salivary secretion in cftr(+/+) but not cftr(-/-) mice; and 4) is selective for CFTR because its effect is inhibited by CFTR(inh)-172, GlyH-101, glibenclamide and GPinh-5a. To conclude, this work identifies a selective activator of wild-type and rescued F508del-CFTR. This nontoxic and water-soluble agent represents a good candidate, alone or in combination with a F508del-CFTR corrector, for the development of a CFTR modulator in cystic fibrosis.
在囊性纤维化的主要治疗策略中,有一种旨在开发囊性纤维化跨膜电导调节蛋白(CFTR)通道调节剂的策略。我们最近发现了甲基乙二醛α-氨基氮杂环加合物,这是一种新的 CFTR 抑制剂家族。在构效关系研究中,我们现在已经确定了 GPact-11a,这是一种能够激活 CFTR 而不是抑制 CFTR 的化合物。在这里,我们通过体外(碘化物外排、荧光成像和膜片钳记录)、离体(短路电流测量)和体内(唾液分泌)实验介绍了 GPact-11a 对 CFTR 活性的影响。我们报告 GPact-11a:1)是几种气道上皮细胞系中 CFTR 的激活剂;2)激活了鼻、气管、支气管、胰腺细胞系和从肺样本中分离出来的人 CF 纤毛上皮细胞中的挽救型 F508del-CFTR;3)刺激离体结肠氯离子分泌并增加 cftr(+/+)但不增加 cftr(-/-)小鼠体内唾液分泌;4)对 CFTR 具有选择性,因为其作用被 CFTR(inh)-172、GlyH-101、格列本脲和 GPinh-5a 抑制。总之,这项工作鉴定了一种对野生型和挽救型 F508del-CFTR 均具有选择性的激活剂。这种无毒、水溶性的药物单独使用或与 F508del-CFTR 校正剂联合使用,有望成为囊性纤维化 CFTR 调节剂的候选药物。