Laboratoire Signalisation et Transports Ioniques Membranaires (STIM), University of Poitiers, Poitiers, 86000, France.
Inserm UMR-S 1250, University of Reims Champagne-Ardenne, Reims, 51100, France.
Sci Rep. 2019 Sep 24;9(1):13729. doi: 10.1038/s41598-019-50066-7.
Loss-of-function mutations in the Cystic Fibrosis Transmembrane conductance Regulator (CFTR) channel in human airway epithelial cells are responsible for Cystic Fibrosis. A deleterious impact of physiological temperature on CFTR plasma membrane expression, residence and channel activity is characteristic of the most common and severe CF mutation, F508del. Using primary human F508del-airway epithelial cells and CF bronchial epithelial CFBE41o- cell lines expressing F508del- or WT-CFTR, we examined the effects of temperature (29 °C-39 °C) on the amplitude and stability of short-circuit CFTR-dependent currents over time and the efficiency of pharmacological strategies to stably restore F508del-CFTR function. We show that F508del-CFTR functional instability at 37 °C is not prevented by low temperature or VX-809 correction, genistein and VX-770 potentiators, nor by the combination VX-809/VX-770. Moreover, F508del-CFTR-dependent currents 30 minutes after CFTR activation at 37 °C did not significantly differ whether a potentiator was used or not. We demonstrate that F508del-CFTR function loss is aggravated at temperatures above 37 °C while limited by a small decrease of temperature and show that the more F508del-CFTR is stimulated, the faster the current loss happens. Our study highlights the existence of a temperature-dependent process inhibiting the function of F508del-CFTR, possibly explaining the low efficacy of pharmacological drugs in clinic.
人类气道上皮细胞中囊性纤维化跨膜电导调节因子(CFTR)通道的功能丧失突变是导致囊性纤维化的原因。最常见和最严重的 CF 突变 F508del 会对 CFTR 质膜表达、驻留和通道活性产生生理温度的有害影响。使用原代 F508del-气道上皮细胞和表达 F508del-或 WT-CFTR 的 CF 支气管上皮 CFBE41o-细胞系,我们研究了温度(29°C-39°C)对短时间内 CFTR 依赖性电流幅度和稳定性的影响,以及药理学策略稳定恢复 F508del-CFTR 功能的效率。我们表明,37°C 时 F508del-CFTR 功能不稳定不能通过低温或 VX-809 校正、染料木黄酮和 VX-770 增强剂预防,也不能通过 VX-809/VX-770 联合预防。此外,在 37°C 下激活 CFTR 30 分钟后,F508del-CFTR 依赖性电流没有显著差异,无论是否使用增强剂。我们证明 F508del-CFTR 功能丧失在 37°C 以上时会加剧,而受温度降低的限制,并表明 F508del-CFTR 受到的刺激越大,电流损失发生得越快。我们的研究强调了存在一个温度依赖性过程抑制 F508del-CFTR 的功能,这可能解释了药理学药物在临床上疗效有限的原因。