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首页> 外文期刊>Regenerative Therapy >KLF4 prevents epithelial to mesenchymal transition in human corneal epithelial cells via endogenous TGF-β2 suppression
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KLF4 prevents epithelial to mesenchymal transition in human corneal epithelial cells via endogenous TGF-β2 suppression

机译:KLF4通过内源性TGF-β2抑制作用防止人角膜上皮细胞上皮向间质转化

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Introduction Krüppel-like factor 4 (KLF4) is considered one of the Yamanaka factors, and recently, we and others have shown that KLF4 is one of the transcription factors essential for reprogramming non-human corneal epithelial cells (HCECs) into HCECs. Since epithelial to mesenchymal transition (EMT) suppression is vital for homeostasis of HCECs via regulation of transcription factors, in this study, we aimed to investigate whether KLF4 prevents EMT in HCECs and to elucidate the underlying mechanism within the canonical TGF-β signalling pathway, which is involved in corneal epithelial wound healing. Methods HCECs were collected from cadaver donors and cultivated. We generated KLF4- knockdown (KD) HCECs using siRNA transfection and analysed morphology, gene or protein expression, and endogenous TGF-β secretion. KLF4 was overexpressed using lentiviral KLF4 expression vectors and underwent protein expression analyses after TGF-β2 treatment. Results KLF4 -KD HCECs showed a fibroblastic morphology, downregulation of the epithelial markers, keratin 12 and keratin 14, and upregulation of the mesenchymal markers, fibronectin 1, vimentin, N-cadherin, and SLUG . Although E-cadherin expression remained unchanged in KLF4 -KD HCECs, immunocytochemical analysis showed that E-cadherin–positive adherens junctions decreased in KLF4 -KD HCECs as well as the decreased total protein levels of E-cadherin analysed by immunoblotting. Moreover, within the TGF-β canonical signalling pathway, TGF-β2 secretion by HCECs increased up to 5 folds, and several TGF-β–associated markers ( TGFB1 , TGFB2 , TGFBR1 , and TGFBR2 ) were significantly upregulated up to 6 folds in the KLF4 -KD HCECs. SMAD2/3, the main signal transduction molecules of the TGF-β signalling pathway, were found to be localised in the nucleus of KLF4 -KD HCECs. When KLF4 was overexpressed, cultivated HCECs showed upregulation of epithelial markers, keratin 14 and E-cadherin, indicating the contributory role of KLF4 in the homeostasis of human corneal epithelium in?vivo. In addition, KLF4 overexpression in HCECs resulted in decreased SMAD2 phosphorylation and altered nuclear localisation of SMAD2/3, even after TGF-β2 treatment. Conclusions These results show that KLF4 prevents EMT in HCECs and suggest a novel role of KLF4 as an endogenous TGF-β2 suppressor in the human corneal epithelium, thus highlighting the potential of KLF4 to prevent EMT and subsequent corneal fibrotic scar formation by attenuating TGF-β signalling.
机译:简介类似于Krüppel的因子4(KLF4)被认为是Yamanaka因子之一,最近,我们和其他人已经证明KLF4是将非人类角膜上皮细胞(HCEC)重编程为HCEC所必需的转录因子之一。由于上皮到间质转化(EMT)抑制通过调节转录因子对于HCEC的稳态至关重要,因此在本研究中,我们旨在研究KLF4是否可阻止HCEC中的EMT,并阐明典型TGF-β信号传导途径中的潜在机制,这与角膜上皮伤口愈合有关。方法从尸体供体中收集HCEC并进行培养。我们使用siRNA转染生成了KLF4-敲低(KD)HCEC,并分析了形态,基因或蛋白质表达以及内源性TGF-β分泌。使用慢病毒KLF4表达载体过表达KLF4,并在TGF-β2处理后进行蛋白表达分析。结果KLF4-KD HCECs表现为成纤维细胞形态,上皮标志物,角蛋白12和角蛋白14下调,间质标志物,纤连蛋白1,波形蛋白,N-钙黏着蛋白和SLUG上调。尽管E-钙粘蛋白的表达在KLF4-KD HCECs中保持不变,但免疫细胞化学分析显示,在KLF4-KD HCECs中E-钙粘蛋白-阳性粘附连接减少,并且通过免疫印迹分析E-钙粘蛋白的总蛋白水平降低。此外,在TGF-β的经典信号传导途径中,HCEC分泌的TGF-β2增加了5倍,并且几种TGF-β相关标记(TGFB1,TGFB2,TGFBR1和TGFBR2)在TGF-β的信号传导中显着上调了6倍。 KLF4-KD HCEC。发现TGF-β信号转导途径的主要信号转导分子SMAD2 / 3位于KLF4-KD HCEC的细胞核中。当KLF4过表达时,培养的HCEC显示上皮标记,角蛋白14和E-钙粘蛋白的上调,表明KLF4在人角膜上皮体内稳态中的作用。此外,即使在TGF-β2处理后,HCEC中KLF4的过表达也会导致SMAD2磷酸化降低和SMAD2 / 3的核定位改变。结论这些结果表明,KLF4可以预防HCEC中的EMT,并提示KLF4作为人角膜上皮中的内源性TGF-β2抑制剂具有新的作用,从而突显了KLF4通过减弱TGF-β来预防EMT和随后的角膜纤维化疤痕形成的潜力。发信号。

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