Abstract

BackgroundIn endothelial cells, activation of the AMP-activated protein kinase (AMPK) has been linked with anti-inflammatory actions but the events downstream of kinase activation are not well understood. Here, we addressed the effects of AMPK activation/deletion on the activation of NFκB and determined whether the AMPK could contribute to the anti-inflammatory actions of nitric oxide (NO).Methodology/Principal FindingsOverexpression of a dominant negative AMPKα2 mutant in tumor necrosis factor-α-stimulated human endothelial cells resulted in increased NFκB activity, E-selectin expression and monocyte adhesion. In endothelial cells from AMPKα2-/- mice the interleukin (IL)-1β induced expression of E-selectin was significantly increased. DETA-NO activated the AMPK and attenuated NFκB activation/E-selectin expression, effects not observed in human endothelial cells in the presence of the dominant negative AMPK, or in endothelial cells from AMPKα2-/- mice. Mechanistically, overexpression of constitutively active AMPK decreased the phosphorylation of IκB and p65, indicating a link between AMPK and the IκB kinase (IKK). Indeed, IKK (more specifically residues Ser177 and Ser181) was found to be a direct substrate of AMPKα2 in vitro. The hyper-phosphorylation of the IKK, which is known to result in its inhibition, was also apparent in endothelial cells from AMPKα2+/+ versus AMPKα2-/- mice.ConclusionsThese results demonstrate that the IKK is a direct substrate of AMPKα2 and that its phosphorylation on Ser177 and Ser181 results in the inhibition of the kinase and decreased NFκB activation. Moreover, as NO potently activates AMPK in endothelial cells, a portion of the anti-inflammatory effects of NO are mediated by AMPK.

Highlights

  • The AMP-activated protein kinase (AMPK) is a member of the Snf1/AMPK family of serine/threonine protein kinases and is an evolutionarily conserved sensor of the cellular energy status

  • These results demonstrate that the IkB kinase (IKK) is a direct substrate of AMPKa2 and that its phosphorylation on Ser177 and Ser181 results in the inhibition of the kinase and decreased nuclear factor kB (NFkB) activation

  • tumor necrosis factor (TNF)-a (1 and 10 ng/ml, 30 min) elicited a marked and concentration-dependent increase in NFkB activity (EMSA; Figure 1B), that was attenuated by endothelial cell pretreatment with DETA-nitric oxide (NO) (Figure 1B)

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Summary

Introduction

The AMP-activated protein kinase (AMPK) is a member of the Snf1/AMPK family of serine/threonine protein kinases and is an evolutionarily conserved sensor of the cellular energy status. The link between cellular metabolism and AMPK activation has been repeatedly demonstrated in tissues such as skeletal and cardiac muscle [2], the precise role played by the AMPK in endothelial cell remains incompletely understood. There are two different isoforms of the catalytic a AMPK subunit (a1 and a2) that are differentially expressed in different tissues. Endothelial cells express both a subunits and different groups report the predominance of different isoforms, a finding that may explain the inconsistent dependence on changes in ADP/ATP for stimulation. Activation of the AMP-activated protein kinase (AMPK) has been linked with antiinflammatory actions but the events downstream of kinase activation are not well understood. We addressed the effects of AMPK activation/deletion on the activation of NFkB and determined whether the AMPK could contribute to the anti-inflammatory actions of nitric oxide (NO)

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