Department of Physiology and Biophysics, University of Mississippi Medical Center, Jackson, MS 39206, USA.
Int J Mol Sci. 2020 Apr 22;21(8):2953. doi: 10.3390/ijms21082953.
Degenerin proteins, such as the beta epithelial Na channel (βENaC), are essential in the intracellular signaling of pressure-induced constriction, an important vascular smooth muscle cell (VSMC) function. While certain cytokines reduce ENaC protein in epithelial tissue, it is unknown if interleukin-17 (IL-17), a potent pro-inflammatory cytokine, directly mediates changes in membrane-associated βENaC in VSMCs. Therefore, we tested the hypothesis that exposure to IL-17 reduces βENaC in VSMCs through canonical mitogen-activated protein kinase (MAPK) signaling pathways. We treated cultured rat VSMCs (A10 cell line) with IL-17 (1-100 ng/mL) for 15 min to 16 h and measured expression of βENaC, p38MAPK, c-jun kinase (JNK), and nuclear factor kappa-light-chain-enhancer of activated B cells (NFκB). IL-17 reduced βENaC protein expression in a concentration-dependent fashion and increased phosphorylation of p38MAPK by 15 min and JNK by 8 h. NFκB was unaffected by IL-17 in VSMCs. IL-17 treatment reduced VSMC viability but had no effect on cell death. To determine the underlying signaling pathway involved in this response, VSMCs were treated before and during IL-17 exposure with p38MAPK or JNK inhibitors. We found that JNK blockade prevented IL-17-mediated βENaC protein suppression. These data demonstrate that the pro-inflammatory cytokine IL-17 regulates VSMC βENaC via canonical MAPK signaling pathways, raising the possibility that βENaC-mediated loss of VSMC function may occur in inflammatory disorders.
退化素蛋白,如β上皮钠通道(βENaC),在压力诱导的收缩的细胞内信号转导中是必不可少的,这是血管平滑肌细胞(VSMC)的重要功能。虽然某些细胞因子会减少上皮组织中的 ENaC 蛋白,但尚不清楚白细胞介素-17(IL-17),一种有效的促炎细胞因子,是否直接介导 VSMCs 中膜相关βENaC 的变化。因此,我们检验了这样一个假设,即暴露于白细胞介素-17(IL-17)会通过经典的丝裂原活化蛋白激酶(MAPK)信号通路减少 VSMCs 中的βENaC。我们用白细胞介素-17(IL-17)(1-100ng/ml)处理培养的大鼠 VSMCs(A10 细胞系)15 分钟至 16 小时,测量βENaC、p38MAPK、c-jun 激酶(JNK)和核因子κB 的表达。白细胞介素-17(IL-17)以浓度依赖性方式降低βENaC 蛋白表达,并在 15 分钟时增加 p38MAPK 的磷酸化,在 8 小时时增加 JNK 的磷酸化。NFκB 在 VSMCs 中不受白细胞介素-17(IL-17)的影响。白细胞介素-17(IL-17)处理降低了 VSMC 的活力,但对细胞死亡没有影响。为了确定参与这种反应的潜在信号通路,在白细胞介素-17(IL-17)暴露前后,用 p38MAPK 或 JNK 抑制剂处理 VSMCs。我们发现 JNK 阻断可防止白细胞介素-17(IL-17)介导的βENaC 蛋白抑制。这些数据表明,促炎细胞因子白细胞介素-17(IL-17)通过经典的 MAPK 信号通路调节 VSMC 的βENaC,这增加了βENaC 介导的 VSMC 功能丧失可能发生在炎症性疾病中的可能性。