Aix-Marseille-Université, Centre National de la Recherche Scientifique, Laboratoire de Neurosciences Cognitives, UMR 7291, CS80011, Marseille, France.
J Gen Physiol. 2021 Dec 6;153(12). doi: 10.1085/jgp.202112871. Epub 2021 Oct 25.
Cholangiocytes actively contribute to the final composition of secreted bile. These cells are exposed to abnormal mechanical stimuli during obstructive cholestasis, which has a deep impact on their function. However, the effects of mechanical insults on cholangiocyte function are not understood. Combining gene silencing and pharmacological assays with live calcium imaging, we probed molecular candidates essential for coupling mechanical force to ATP secretion in mouse cholangiocytes. We show that Piezo1 and Pannexin1 are necessary for eliciting the downstream effects of mechanical stress. By mediating a rise in intracellular Ca2+, Piezo1 acts as a mechanosensor responsible for translating cell swelling into activation of Panx1, which triggers ATP release and subsequent signal amplification through P2X4R. Co-immunoprecipitation and pull-down assays indicated physical interaction between Piezo1 and Panx1, which leads to stable plasma membrane complexes. Piezo1-Panx1-P2X4R ATP release pathway could be reconstituted in HEK Piezo1 KO cells. Thus, our data suggest that Piezo1 and Panx1 can form a functional signaling complex that controls force-induced ATP secretion in cholangiocytes. These findings may foster the development of novel therapeutic strategies for biliary diseases.
胆管细胞积极参与分泌胆汁的最终组成。这些细胞在阻塞性胆汁淤积时会受到异常的机械刺激,这对它们的功能有深远的影响。然而,机械损伤对胆管细胞功能的影响尚不清楚。我们结合基因沉默和药理学测定与活钙成像,探测了在小鼠胆管细胞中连接机械力与 ATP 分泌的必需分子候选物。我们表明 Piezo1 和 Pannexin1 对于引发机械应激的下游效应是必需的。通过介导细胞内 Ca2+的增加,Piezo1 作为机械感受器,将细胞肿胀转化为 Panx1 的激活,从而触发 ATP 释放,并通过 P2X4R 引发后续信号放大。共免疫沉淀和下拉测定表明 Piezo1 和 Panx1 之间存在物理相互作用,导致稳定的质膜复合物。Piezo1-Panx1-P2X4R ATP 释放途径可以在 HEK Piezo1 KO 细胞中重建。因此,我们的数据表明 Piezo1 和 Panx1 可以形成一个功能性的信号复合物,控制胆管细胞中力诱导的 ATP 分泌。这些发现可能为胆道疾病的治疗提供新的策略。