首页> 外文期刊>Disease models & mechanisms: DMM >Enolase 1 (ENO1) and protein disulfide-isomerase associated 3 (PDIA3) regulate Wnt/β-catenin-driven trans-differentiation of murine alveolar epithelial cells
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Enolase 1 (ENO1) and protein disulfide-isomerase associated 3 (PDIA3) regulate Wnt/β-catenin-driven trans-differentiation of murine alveolar epithelial cells

机译:烯醇酶1(ENO1)和蛋白质二硫键异构酶相关3(PDIA3)调节Wnt /β-catenin驱动的鼠肺泡上皮细胞的转分化

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The alveolar epithelium represents a major site of tissue destruction during lung injury. It consists of alveolar epithelial type I (ATI) and type II (ATII) cells. ATII cells are capable of self-renewal and exert progenitor function for ATI cells upon alveolar epithelial injury. Cell differentiation pathways enabling this plasticity and allowing for proper repair, however, are poorly understood. Here, we applied proteomics, expression analysis and functional studies in primary murine ATII cells to identify proteins and molecular mechanisms involved in alveolar epithelial plasticity. Mass spectrometry of cultured ATII cells revealed a reduction of carbonyl reductase 2 (CBR2) and an increase in enolase 1 (ENO1) and protein disulfide-isomerase associated 3 (PDIA3) protein expression during ATII-to-ATI cell trans-differentiation. This was accompanied by increased Wnt/β-catenin signaling, as analyzed by qRT-PCR and immunoblotting. Notably, ENO1 and PDIA3, along with T1α (podoplanin; an ATI cell marker), exhibited decreased protein expression upon pharmacological and molecular Wnt/β-catenin inhibition in cultured ATII cells, whereas CBR2 levels were stabilized. Moreover, we analyzed primary ATII cells from mice with bleomycin-induced lung injury, a model exhibiting activated Wnt/β-catenin signaling in vivo . We observed reduced CBR2 significantly correlating with surfactant protein C (SFTPC), whereas ENO1 and PDIA3 along with T1α were increased in injured ATII cells. Finally, siRNA-mediated knockdown of ENO1, as well as PDIA3, in primary ATII cells led to reduced T1α expression, indicating diminished cell trans-differentiation. Our data thus identified proteins involved in ATII-to-ATI cell trans-differentiation and suggest a Wnt/β-catenin-driven functional role of ENO1 and PDIA3 in alveolar epithelial cell plasticity in lung injury and repair.
机译:肺泡上皮代表肺损伤期间组织破坏的主要部位。它由肺泡上皮I型(ATI)和II型(ATII)细胞组成。 ATII细胞能够自我更新并在肺泡上皮损伤后发挥ATI细胞的祖细胞功能。然而,人们对使这种可塑性和适当修复的细胞分化途径了解甚少。在这里,我们在原代小鼠ATII细胞中应用了蛋白质组学,表达分析和功能研究,以鉴定参与肺泡上皮可塑性的蛋白质和分子机制。进行培养的ATII细胞的质谱分析表明,在ATII到ATI细胞的转分化过程中,羰基还原酶2(CBR2)减少,烯醇酶1(ENO1)和蛋白质二硫键异构酶相关3(PDIA3)蛋白表达增加。通过qRT-PCR和免疫印迹分析,这伴随着Wnt /β-catenin信号的增加。值得注意的是,在培养的ATII细胞中,药理作用和分子Wnt /β-catenin抑制作用后,ENO1和PDIA3以及T1α(podoplanin;一种ATI细胞标记物)的蛋白表达下降,而CBR2的水平稳定了。此外,我们分析了博来霉素诱导的肺损伤小鼠的原代ATII细胞,该模型在体内表现出活化的Wnt /β-catenin信号传导。我们观察到减少的CBR2与表面活性剂蛋白C(SFTPC)显着相关,而ENO1和PDIA3以及T1α在受损的ATII细胞中增加。最后,在原代ATII细胞中siRNA介导的ENO1以及PDIA3的敲低导致T1α表达降低,表明细胞转分化减少。因此,我们的数据确定了参与ATII到ATI细胞转分化的蛋白质,并提出了WNO /β-catenin驱动的ENO1和PDIA3在肺损伤和修复的肺泡上皮细胞可塑性中的功能作用。

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