Perelman School of Medicine at the University of Pennsylvania Philadelphia, Philadelphia, PA, USA.
Department of Otorhinolaryngology: Head and Neck Surgery, University of Pennsylvania, Philadelphia, PA, USA.
Sci Rep. 2017 Jul 27;7(1):6687. doi: 10.1038/s41598-017-07221-9.
Mechanical stimulation of airway epithelial cells causes apical release of ATP, which increases ciliary beat frequency (CBF) and speeds up mucociliary clearance. The mechanisms responsible for this ATP release are poorly understood. CALHM1, a transmembrane protein with shared structural features to connexins and pannexins, has been implicated in ATP release from taste buds, but it has not been evaluated for a functional role in the airway. In the present study, Calhm1 knockout, Panx1 knockout, and wild-type mouse nasal septal epithelial cells were grown at an air-liquid interface (ALI) and subjected to light mechanical stimulation from an air puff. Apical ATP release was attenuated in Calhm1 knockout cultures following mechanical stimulation at a pressure of 55 mmHg for 50 milliseconds (p < 0.05). Addition of carbenoxolone, a PANX1 channel blocker, completely abolished ATP release in Calhm1 knockout cultures but not in wild type or Panx1 knockout cultures. An increase in CBF was observed in wild-type ALIs following mechanical stimulation, and this increase was significantly lower (p < 0.01) in Calhm1 knockout cultures. These results demonstrate that CALHM1 plays a newly defined role, complementary to PANX1, in ATP release and downstream CBF modulation following a mechanical stimulus in airway epithelial cells.
气道上皮细胞的机械刺激导致顶端释放 ATP,从而增加纤毛摆动频率(CBF)并加速黏液纤毛清除。导致这种 ATP 释放的机制尚不清楚。CALHM1 是一种跨膜蛋白,与连接蛋白和 Pannexin 具有共同的结构特征,已被牵连到从味蕾释放 ATP,但尚未评估其在气道中的功能作用。在本研究中,Calhm1 敲除、Panx1 敲除和野生型小鼠鼻隔上皮细胞在气液界面(ALI)上生长,并接受空气脉冲的轻机械刺激。在 55mmHg 的压力下机械刺激 50 毫秒后,Calhm1 敲除培养物中的顶端 ATP 释放减弱(p<0.05)。在 Calhm1 敲除培养物中,添加 Panx1 通道阻滞剂 carbenoxolone 可完全消除 ATP 释放,但在野生型或 Panx1 敲除培养物中则不会。在机械刺激后观察到野生型 ALI 中的 CBF 增加,而在 Calhm1 敲除培养物中的增加明显较低(p<0.01)。这些结果表明,CALHM1 在气道上皮细胞的机械刺激后 ATP 释放和下游 CBF 调节中发挥了新定义的作用,与 PANX1 互补。