Walther Straub Institute for Pharmacology and Toxicology, Member of the German Center for Lung Research (DZL), Medical Faculty, LMU-Munich, Nussbaumstrasse 26, 80336 Munich, Germany.
Cells. 2024 Oct 17;13(20):1717. doi: 10.3390/cells13201717.
Transient receptor potential vanilloid 4 (TRPV4) channels have been associated with numerous pulmonary pathologies, including hypertension, asthma, and acute lung injury. However, their role in the alveolar epithelium remains unclear. We performed impedance-based resistance measurements in primary differentiated alveolar epithelial type I (AT1) cells from wild-type (WT) and TRPV4-deficient (TRPV4-/-) C57/BL6J mice to detect changes in AT1 barrier integrity upon TRPV4 activation. Both pharmacological (GSK1016790A) and a low pH-driven activation of TRPV4 were quantified, and the downstream effects on adherens junctions were assessed through the Western blotting of epithelial cadherin (E-cadherin) protein levels. Importantly, a drop in pH caused a rapid decrease in AT1 barrier resistance and increased the formation of a ~35 kDa E-cadherin C-terminal fragment, with both effects significantly reduced in TRPV4-/- AT1 cells. Similarly, the pharmacological activation of TRPV4 in AT1 cells triggered an immediate transient loss of barrier resistance and the formation of the same E-cadherin fragment, which was again diminished by TRPV4 deficiency. Moreover, TRPV4-mediated E-cadherin cleavage was significantly reduced by GI254023X, an antagonist of a disintegrin and metalloprotease 10 (ADAM10). Our results confirm the role of TRPV4 in regulating alveolar epithelial barrier permeability and provide insight into a novel signaling pathway by which TRPV4-induced Ca influx stimulates metalloprotease-driven ectodomain shedding.
瞬时受体电位香草酸亚型 4(TRPV4)通道与许多肺部疾病有关,包括高血压、哮喘和急性肺损伤。然而,它们在肺泡上皮细胞中的作用尚不清楚。我们在野生型(WT)和 TRPV4 缺陷型(TRPV4-/-)C57/BL6J 小鼠的原代分化肺泡上皮细胞 I 型(AT1)中进行基于阻抗的电阻测量,以检测 TRPV4 激活后 AT1 屏障完整性的变化。我们对 TRPV4 的药理学(GSK1016790A)和低 pH 驱动的激活进行了定量,并通过上皮钙黏蛋白(E-cadherin)蛋白水平的 Western blot 评估了其对黏附连接的下游影响。重要的是,pH 值下降会导致 AT1 屏障电阻迅速下降,并增加~35 kDa 的 E-cadherin C 端片段的形成,而 TRPV4-/-AT1 细胞中的这两种作用均显著降低。同样,TRPV4 在 AT1 细胞中的药理学激活会引发屏障电阻的瞬时快速丧失和相同的 E-cadherin 片段的形成,而 TRPV4 缺失再次减弱了这种作用。此外,TRPV4 介导的 E-cadherin 切割通过 a disintegrin 和金属蛋白酶 10(ADAM10)的拮抗剂 GI254023X 显著减少。我们的研究结果证实了 TRPV4 在调节肺泡上皮细胞屏障通透性中的作用,并提供了一个新的信号通路的见解,即 TRPV4 诱导的 Ca2+内流刺激金属蛋白酶驱动的细胞外结构域脱落。