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Deletion of the Activated Protein-1 Transcription Factor JunD Induces Oxidative Stress and Accelerates Age-Related Endothelial Dysfunction

Francesco Paneni, Elena Osto, Sarah Costantino, Bogdan Mateescu, Sylvie Briand, Giuseppe Coppolino, Enrico Perna, Pavani Mocharla, Alexander Akhmedov, Ruslan Kubant, Lucia Rohrer, Tadeusz Maliñski, Giovanni G. Camici, Christian M. Matter, Fatima Mechta‐Grigoriou

Circulation · 2013 · ▲ 110 citations

Abstract

BACKGROUND: Reactive oxygen species are major determinants of vascular aging. JunD, a member of the activated protein-1 family of transcription factors, is emerging as a major gatekeeper against oxidative stress. However, its contribution to reactive oxygen species homeostasis in the vasculature remains unknown. METHODS AND RESULTS: Endothelium-dependent vasorelaxation was impaired in young and old JunD(-/-) mice (6 and 22 months old) compared with age-matched wild-type mice. JunD(-/-) mice displayed an age-independent decline in endothelial nitric oxide release and endothelial nitric oxide synthase activity and increased mitochondrial superoxide formation and peroxynitrite levels. Furthermore, vascular expression and activity of the free radical scavengers manganese and extracellular superoxide dismutase and aldehyde dehydrogenase 2 were reduced, whereas the NADPH oxidase subunits p47phox, Nox2, and Nox4 were upregulated. These redox changes were associated with premature vascular aging, as shown by reduced telomerase activity, increased β-galactosidase-positive cells, upregulation of the senescence(definition) markers p16(INK4a) and p53, and mitochondrial disruption. Interestingly, old wild-type mice showed a reduction in JunD expression and transcriptional activity resulting from promoter hypermethylation and binding with tumor suppressor menin, respectively. In contrast, JunD overexpression blunted age-induced endothelial dysfunction. In human endothelial cells, JunD knockdown exerted a similar impairment of the O2(-)/nitric oxide balance that was prevented by concomitant NADPH inhibition. In parallel, JunD expression was reduced in monocytes from old versus young healthy subjects and correlated with mRNA levels of scavenging and oxidant enzymes. CONCLUSIONS: JunD provides protection in aging-induced endothelial dysfunction and may represent a novel target to prevent reactive oxygen species-driven vascular aging.

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OpenAlex
DOI
10.1161/circulationaha.112.000826
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2026-06-22 MST

Cite this

APA
Paneni, F., Osto, E., Costantino, S., Mateescu, B., Briand, S., Coppolino, G., Perna, E., Mocharla, P., Akhmedov, A., Kubant, R., Rohrer, L., Maliñski, T., Camici, G.G., Matter, C.M., Mechta‐Grigoriou, F., Volpe, M., Lüscher, T.F., &amp; Cosentino, F. (2013). Deletion of the Activated Protein-1 Transcription Factor JunD Induces Oxidative Stress and Accelerates Age-Related Endothelial Dysfunction. <em>Circulation</em>. https://doi.org/10.1161/circulationaha.112.000826
Vancouver
Paneni F, Osto E, Costantino S, Mateescu B, Briand S, Coppolino G, et al. Deletion of the Activated Protein-1 Transcription Factor JunD Induces Oxidative Stress and Accelerates Age-Related Endothelial Dysfunction. Circulation. 2013. doi:10.1161/circulationaha.112.000826.
BibTeX
@article{francesco2013Deleti, title = {Deletion of the Activated Protein-1 Transcription Factor JunD Induces Oxidative Stress and Accelerates Age-Related Endothelial Dysfunction}, author = {Francesco Paneni and Elena Osto and Sarah Costantino and Bogdan Mateescu and Sylvie Briand and Giuseppe Coppolino and Enrico Perna and Pavani Mocharla and Alexander Akhmedov and Ruslan Kubant and Lucia Rohrer and Tadeusz Maliñski and Giovanni G. Camici and Christian M. Matter and Fatima Mechta‐Grigoriou and Massimo Volpe and Thomas F. Lüscher and Francesco Cosentino}, journal = {Circulation}, year = {2013}, doi = {10.1161/circulationaha.112.000826}, }

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