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缺氧通过 ERK1/2-NF-κB-Nox4 依赖性机制下调人肺动脉平滑肌细胞中的 PPARγ。

Hypoxia downregulates PPARγ via an ERK1/2-NF-κB-Nox4-dependent mechanism in human pulmonary artery smooth muscle cells.

机构信息

Department of Medicine, Atlanta Veterans Affairs and Emory University Medical Centers, Atlanta, GA 30033, USA.

出版信息

Free Radic Biol Med. 2013 Oct;63:151-60. doi: 10.1016/j.freeradbiomed.2013.05.013. Epub 2013 May 15.

Abstract

The ligand-activated transcription factor peroxisome proliferator-activated receptor γ (PPARγ) regulates metabolism, cell proliferation, and inflammation. Pulmonary hypertension (PH) is associated with reduced PPARγ expression, and hypoxia exposure regimens that cause PH reduce PPARγ expression. This study examines mechanisms of hypoxia-induced PPARγ downregulation in vitro and in vivo. Hypoxia reduced PPARγ mRNA and protein levels, PPARγ activity, and the expression of PPARγ-regulated genes in human pulmonary artery smooth muscle cells (HPASMCs) exposed to 1% oxygen for 72 h. Similarly, exposure of mice to hypoxia (10% O₂) for 3 weeks reduced PPARγ mRNA and protein in mouse lung. Inhibiting ERK1/2 with PD98059 or treatment with siRNA directed against either NF-κB p65 or Nox4 attenuated hypoxic reductions in PPARγ expression and activity. Furthermore, degradation of H₂O₂ using PEG-catalase prevented hypoxia-induced ERK1/2 phosphorylation and Nox4 expression, suggesting sustained ERK1/2-mediated signaling and Nox4 expression in this response. Mammalian two-hybrid assays demonstrated that PPARγ and p65 bind directly to each other in a mutually repressive fashion. We conclude from these results that hypoxic regimens that promote PH pathogenesis and HPASMC proliferation reduce PPARγ expression and activity through ERK1/2-, p65-, and Nox4-dependent pathways. These findings provide novel insights into mechanisms by which pathophysiological stimuli such as hypoxia cause loss of PPARγ activity and pulmonary vascular cell proliferation, pulmonary vascular remodeling, and PH. These results also indicate that restoration of PPARγ activity with pharmacological ligands may provide a novel therapeutic approach in selected forms of PH.

摘要

配体激活的转录因子过氧化物酶体增殖物激活受体γ(PPARγ)调节代谢、细胞增殖和炎症。肺动脉高压(PH)与 PPARγ 表达降低有关,并且导致 PH 的低氧暴露方案会降低 PPARγ 的表达。本研究探讨了体外和体内低氧诱导 PPARγ 下调的机制。低氧降低了暴露于 1%氧气 72 小时的人肺动脉平滑肌细胞(HPASMC)中的 PPARγ mRNA 和蛋白水平、PPARγ 活性以及 PPARγ 调节基因的表达。同样,将小鼠暴露于低氧(10% O₂)3 周会降低小鼠肺中的 PPARγ mRNA 和蛋白。用 PD98059 抑制 ERK1/2 或用针对 NF-κB p65 或 Nox4 的 siRNA 处理可减弱低氧对 PPARγ 表达和活性的降低。此外,使用 PEG-过氧化氢酶降解 H₂O₂可防止低氧诱导的 ERK1/2 磷酸化和 Nox4 表达,表明在该反应中持续的 ERK1/2 介导的信号和 Nox4 表达。哺乳动物双杂交测定表明,PPARγ 和 p65 以相互抑制的方式直接相互结合。我们从这些结果得出结论,促进 PH 发病机制和 HPASMC 增殖的低氧方案通过 ERK1/2、p65 和 Nox4 依赖性途径降低 PPARγ 的表达和活性。这些发现为低氧等病理生理刺激导致 PPARγ 活性丧失和肺血管细胞增殖、肺血管重塑和 PH 的机制提供了新的见解。这些结果还表明,用药理学配体恢复 PPARγ 活性可能为某些形式的 PH 提供新的治疗方法。

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本文引用的文献

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