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ERK1/2 pathway mediates epithelial-mesenchymal transition by cross-interacting with TGFβ/Smad and Jagged/Notch signaling pathways in lens epithelial cells

机译:ERK1 / 2通路通过与晶状体上皮细胞中的TGFβ/ Smad和Jagged / Notch信号通路交叉相互作用介导上皮-间质转化

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Epithelial-mesenchymal transition (EMT) of lens epithelial cells (LECs) is the major pathological mechanism in anterior subcapsular cataract (ASC) and posterior capsule opacification (PCO), which are important causes of visual impairment. Extracellular signal-regulated kinase (ERK)1/2 pathway has been reported to play a major role in carcinogenesis, cancer metastasis and various fibrotic diseases. We hypothesized that ERK1/2 signaling can cross-interact with canonical transforming growth factor β (TGFβ)/Smad signaling and the Notch pathway, which subsequently contributes to LECs EMT. In this study, we demonstrated that ERK1/2 signaling was activated in TGFβ2-induced EMT in human LECs, whereas the blockade of TGFβ2/Smad2/3 signaling with SB431542 did not inhibit the activation of ERK1/2 induced by TGFβ2. In addition, inactivation of ERK1/2 signaling with a specific MEK/ ERK1/2 inhibitor, U0126, completely prevented the TGFβ2-induced upregulation of α-SMA, collagen type I, collagen type IV and fibronectin. We also demonstrated that inactivation of ERK1/2 signaling inhibited canonical TGFβ/Smad signaling, as well as the Jagged/Notch pathway. By contrast, blockade of the Notch pathway by DAPT inhibited the TGFβ2-induced activation of ERK1/2 pathway in LECs. Thus, results of this study provide evidence for the complex interplay between ERK1/2, TGFβ/Smad, and Jagged/Notch signaling pathways in the regulation of EMT in LECs. Inhibition of the ERK1/2 pathway may therefore have therapeutic value in the prevention and treatment of ASC and PCO.
机译:晶状体上皮细胞(LECs)的上皮-间质转化(EMT)是前囊白内障(ASC)和后囊混浊(PCO)的主要病理机制,是造成视觉障碍的重要原因。据报道,细胞外信号调节激酶(ERK)1/2途径在致癌,癌症转移和各种纤维化疾病中起着重要作用。我们假设ERK1 / 2信号传导可以与经典的转化生长因子β(TGFβ)/ Smad信号传导和Notch通路交叉相互作用,从而促进LECs EMT。在这项研究中,我们证明了ERK1 / 2信号在TGFβ2诱导的人LECs中被激活,而SB431542对TGFβ2/ Smad2 / 3信号的阻断并没有抑制TGFβ2诱导的ERK1 / 2的激活。此外,用特定的MEK / ERK1 / 2抑制剂U0126使ERK1 / 2信号失活,完全阻止了TGFβ2诱导的α-SMA,I型胶原,IV型胶原和纤连蛋白的上调。我们还证明,ERK1 / 2信号的失活抑制了典型的TGFβ/ Smad信号以及Jagged / Notch通路。相比之下,DAPT阻断Notch通路可抑制TGFβ2诱导的LECs ERK1 / 2通路的激活。因此,这项研究的结果为ERK1 / 2,TGFβ/ Smad和锯齿状/ Notch信号通路在LECs的调节中的复杂相互作用提供了证据。因此,ERK1 / 2途径的抑制在预防和治疗ASC和PCO中可能具有治疗价值。

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