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基因敲除 Cav-2 可使小鼠对博来霉素诱导的损伤敏感。

Genetic ablation of caveolin-2 sensitizes mice to bleomycin-induced injury.

机构信息

Department of Cancer Biology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA, USA.

出版信息

Cell Cycle. 2013 Jul 15;12(14):2248-54. doi: 10.4161/cc.25335.

Abstract

Caveolar domains act as platforms for the organization of molecular complexes involved in signal transduction. Caveolin proteins, the principal structural components of caveolae, have been involved in many cellular processes. Caveolin-1 (Cav-1) and caveolin-2 (Cav-2) are highly expressed in the lung. Cav-1-deficient mice (Cav-1(-/-)) and Cav-2-deficient mice (Cav-2(-/-)) exhibit severe lung dysfunction attributed to a lack of Cav-2 expression. Recently, Cav-1 has been shown to regulate lung fibrosis in different models. Here, we show that Cav-2 is also involved in modulation of the fibrotic response, but through distinct mechanisms. Treatment of wild-type mice with the pulmonary fibrosis-inducer bleomycin reduced the expression of Cav-2 and its phosphorylation at tyrosine 19. Importantly, Cav-2(-/-) mice, but not Cav-1(-/-) mice, were more sensitive to bleomycin-induced lung injury in comparison to wild-type mice. Bleomycin-induced lung injury was characterized by alveolar thickening, increase in cell density, and extracellular matrix deposition. The lung injury observed in bleomycin-treated Cav-2(-/-) mice was not associated with alterations in the TGF-β signaling pathway and/or in the ability to produce collagen. However, apoptosis and proliferation were more prominent in lungs of bleomycin-treated Cav-2(-/-) mice. Since Cav-1(-/-) mice also lack Cav-2 expression and show a different outcome after bleomycin treatment, we conclude that Cav-1 and Cav-2 have distinct roles in bleomycin induced-lung fibrosis, and that the balance of both proteins determines the development of the fibrotic process.

摘要

腔囊泡域作为参与信号转导的分子复合物的组织平台发挥作用。腔囊泡的主要结构成分——小窝蛋白,参与了许多细胞过程。小窝蛋白-1(Cav-1)和小窝蛋白-2(Cav-2)在肺部中高表达。Cav-1 缺陷型小鼠(Cav-1(-/-))和 Cav-2 缺陷型小鼠(Cav-2(-/-))表现出严重的肺功能障碍,这归因于 Cav-2 表达的缺乏。最近,Cav-1 已被证明在不同模型中调节肺纤维化。在这里,我们表明 Cav-2 也参与调节纤维化反应,但通过不同的机制。用肺纤维化诱导剂博来霉素处理野生型小鼠会降低 Cav-2 的表达及其酪氨酸 19 位的磷酸化。重要的是,与野生型小鼠相比,Cav-2(-/-)小鼠而非 Cav-1(-/-)小鼠对博来霉素诱导的肺损伤更为敏感。博来霉素诱导的肺损伤表现为肺泡增厚、细胞密度增加和细胞外基质沉积。在博来霉素处理的 Cav-2(-/-)小鼠中观察到的肺损伤与 TGF-β 信号通路的改变和/或胶原产生能力无关。然而,博来霉素处理的 Cav-2(-/-)小鼠中的细胞凋亡和增殖更为明显。由于 Cav-1(-/-)小鼠也缺乏 Cav-2 表达,并在博来霉素处理后表现出不同的结果,我们得出结论,Cav-1 和 Cav-2 在博来霉素诱导的肺纤维化中具有不同的作用,并且这两种蛋白质的平衡决定了纤维化过程的发展。

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