4.5 Article

TGF-β regulates Nox4, MnSOD and catalase expression, and IL-6 release in airway smooth muscle cells

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajplung.00134.2010

关键词

Smad; phosphatidyl-inositol kinases; reactive oxygen species; N-acetyl cysteine; manganese-superoxide dismutase; transforming growth factor-beta; NADPH oxidase 4 (Nox4)

资金

  1. Wellcome Trust [085935]
  2. National Institute for Health Research Respiratory Disease Biomedical Research Unit at the Royal Brompton
  3. Harefield National Health Service Foundation Trust
  4. Imperial College London
  5. Asthma UK [08/041] Funding Source: researchfish
  6. Medical Research Council [G1000758B, G0801056B, G1000758] Funding Source: researchfish
  7. National Institute for Health Research [NF-SI-0508-10212] Funding Source: researchfish

向作者/读者索取更多资源

Michaeloudes C, Sukkar MB, Khorasani NM, Bhavsar PK, Chung KF. TGF-beta regulates Nox4, MnSOD and catalase expression, and IL-6 release in airway smooth muscle cells. Am J Physiol Lung Cell Mol Physiol 300: L295-L304, 2011. First published December 3, 2010; doi:10.1152/ajplung.00134.2010.-Reactive oxygen species (ROS) are generated as a result of normal cellular metabolism, mainly through the mitochondria and peroxisomes, but their release is enhanced by the activation of oxidant enzymes such as NADPH oxidases or downregulation of endogenous antioxidant enzymes such as manganese-superoxide dismutase (MnSOD) and catalase. Transforming growth factor-beta (TGF-beta), found to be overexpressed in airway smooth muscle (ASM) from asthmatic and chronic obstructive pulmonary disease patients, may be a pivotal regulator of abnormal ASM cell (ASMC) function in these diseases. An important effect of TGF-beta on ASMC inflammatory responses is the induction of IL-6 release. TGF-beta also triggers intracellular ROS release in ASMCs by upregulation of NADPH oxidase 4 (Nox4). However, the effect of TGF-beta on the expression of key antioxidant enzymes and subsequently on oxidant/antioxidant balance is unknown. Moreover, the role of redox-dependent pathways in the mediation of the proinflammatory effects of TGF-beta in ASMCs is unclear. In this study, we show that TGF-beta induced the expression of Nox4 while at the same time inhibiting the expression of MnSOD and catalase. This change in oxidant/antioxidant enzymes was accompanied by elevated ROS levels and IL-6 release. Further studies revealed a role for Smad3 and phosphatidylinositol kinase-mediated pathways in the induction of oxidant/antioxidant imbalance and IL-6 release. The changes in oxidant/antioxidant enzymes and IL-6 release were reversed by the antioxidants N-acetyl-cysteine (NAC) and ebselen through inhibition of Smad3 phosphorylation, indicating redox-dependent activation of Smad3 by TGF-beta. Moreover, these findings suggest a potential role for NAC in preventing TGF-beta-mediated pro-oxidant and proinflammatory responses in ASMCs. Knockdown of Nox4 using small interfering RNA partially prevented the inhibition of MnSOD but had no effect on catalase and IL-6 expression. These findings provide novel insights into redox regulation of ASM function by TGF-beta.

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