CTNNAL1 通过 RhoA/ROCK1 通路促进支气管上皮细胞结构的完整性。

Caixia Liu, Jinmei Wang, Yurong Tan, Chi Liu, X. Qu, Hui-jun Liu, Meiling Tan, Changqing Deng, Xiaoqun Qin, Yang Xiang
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摘要

粘附分子在应激状态下维持气道上皮细胞结构完整性方面起着关键作用。以前,我们曾报道过哮喘动物模型中 catenin alpha-like 1(CTNNAL1)的下调,以及臭氧应激后人支气管上皮细胞(HBECs)边缘的上调。在这项工作中,我们探讨了 CTNNAL1 在 HBECs 结构粘附中的潜在作用及其可能的机制。我们用 CTNNAL1-RNAi 重组腺相关病毒(AAV)在肺部构建了 CTNNAL1 -/- 小鼠模型,并用 CTNNAL1-siRNA 重组质粒稳定转染了 CTNNAL1 沉默细胞系。血色素和伊红(HE)染色显示,CTNNAL1 -/-小鼠的上皮细胞变性,气道结构受损。在 HBECs 中沉默 CTNNAL1 可抑制细胞增殖,削弱细胞外基质粘附力和细胞间粘附力,这可能是通过细胞骨架的作用实现的。我们还发现,与载体对照细胞相比,臭氧处理细胞中结构粘附相关分子 E-cadherin、整合素 β1 和整合素 β4 的表达明显减少。此外,我们的研究结果表明,CTNNAL1沉默后,RhoA/ROCK1的表达水平降低。用 ROCK 抑制剂 Y27632 处理 CTNNAL1 表达的 HBECs,可消除臭氧诱导的粘附分子的表达。总之,本研究的结果表明,CTNNAL1 在臭氧挑战下维持气道上皮细胞结构完整性方面起着关键作用,并通过 RhoA/ROCK1 通路与上皮细胞骨架动力学和粘附相关分子的表达有关。
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CTNNAL1 promotes the structural integrity of bronchial epithelial cells through the RhoA/ROCK1 pathway.
Adhesion molecules play critical roles in maintaining the structural integrity of the airway epithelium in airways under stress. Previously, we reported that catenin alpha-like 1 (CTNNAL1) is downregulated in an asthma animal model and upregulated at the edge of human bronchial epithelial cells (HBECs) after ozone stress. In this work, we explore the potential role of CTNNAL1 in the structural adhesion of HBECs and its possible mechanism. We construct a CTNNAL1 ‒/‒ mouse model with CTNNAL1-RNAi recombinant adeno-associated virus (AAV) in the lung and a CTNNAL1-silencing cell line stably transfected with CTNNAL1-siRNA recombinant plasmids. Hematoxylin and eosin (HE) staining reveals that CTNNAL1 ‒/‒ mice have denuded epithelial cells and structural damage to the airway. Silencing of CTNNAL1 in HBECs inhibits cell proliferation and weakens extracellular matrix adhesion and intercellular adhesion, possibly through the action of the cytoskeleton. We also find that the expressions of the structural adhesion-related molecules E-cadherin, integrin β1, and integrin β4 are significantly decreased in ozone-treated cells than in vector control cells. In addition, our results show that the expression levels of RhoA/ROCK1 are decreased after CTNNAL1 silencing. Treatment with Y27632, a ROCK inhibitor, abolished the expressions of adhesion molecules induced by ozone in CTNNAL1-overexpressing HBECs. Overall, the findings of the present study suggest that CTNNAL1 plays a critical role in maintaining the structural integrity of the airway epithelium under ozone challenge, and is associated with epithelial cytoskeleton dynamics and the expressions of adhesion-related molecules via the RhoA/ROCK1 pathway.
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