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Enoxacin extends lifespan of C. elegans by inhibiting miR-34-5p and promoting mitohormesis

Silas Pinto, Vitor Sato, Evandro A. De‐Souza, Rafael C. Ferraz, Henrique Camara, Ana Pinca, Diego R. Mazzotti, Michael Lovci, Guilherme Tonon-da-Silva, Camila M. Lopes‐Ramos, Raphael B. Parmigiani, Martin Würtele, Katlin B. Massirer, Marcelo A. Mori

Redox Biology · 2018 · ▲ 56 citations

Abstract

Alterations in microRNA (miRNA) processing have been previously linked to aging. Here we used the small molecule enoxacin to pharmacologically interfere with miRNA biogenesis and study how it affects aging in C. elegans. Enoxacin extended worm lifespan and promoted survival under normal and oxidative stress conditions. Enoxacin-induced longevity required the transcription factor SKN-1/Nrf2 and was blunted by the antioxidant N-acetyl-cysteine, suggesting a prooxidant-mediated mitohormetic response. The longevity effects of enoxacin were also dependent on the miRNA pathway, consistent with changes in miRNA expression elicited by the drug. Among these differentially expressed miRNAs, the widely conserved miR-34-5p was found to play an important role in enoxacin-mediated longevity. Enoxacin treatment down-regulated miR-34-5p and did not further extend lifespan of long-lived mir-34 mutants. Moreover, N-acetyl-cysteine abrogated mir-34(gk437)-induced longevity. Evidence also points to double-stranded RNA-specific adenosine deaminases (ADARs) as new targets of enoxacin since ADAR loss-of-function abrogates enoxacin-induced lifespan extension. Thus, enoxacin increases lifespan by reducing miR-34-5p levels, interfering with the redox balance and promoting healthspan(definition).

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OpenAlex
DOI
10.1016/j.redox.2018.06.006
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2026-08-04 MST

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APA
Pinto, S., Sato, V., De‐Souza, E.A., Ferraz, R.C., Camara, H., Pinca, A., Mazzotti, D.R., Lovci, M., Tonon-da-Silva, G., Lopes‐Ramos, C.M., Parmigiani, R.B., Würtele, M., Massirer, K.B., &amp; Mori, M.A. (2018). Enoxacin extends lifespan of C. elegans by inhibiting miR-34-5p and promoting mitohormesis. <em>Redox Biology</em>. https://doi.org/10.1016/j.redox.2018.06.006
Vancouver
Pinto S, Sato V, De‐Souza EA, Ferraz RC, Camara H, Pinca A, et al. Enoxacin extends lifespan of C. elegans by inhibiting miR-34-5p and promoting mitohormesis. Redox Biology. 2018. doi:10.1016/j.redox.2018.06.006.
BibTeX
@article{silas2018Enoxac, title = {Enoxacin extends lifespan of C. elegans by inhibiting miR-34-5p and promoting mitohormesis}, author = {Silas Pinto and Vitor Sato and Evandro A. De‐Souza and Rafael C. Ferraz and Henrique Camara and Ana Pinca and Diego R. Mazzotti and Michael Lovci and Guilherme Tonon-da-Silva and Camila M. Lopes‐Ramos and Raphael B. Parmigiani and Martin Würtele and Katlin B. Massirer and Marcelo A. Mori}, journal = {Redox Biology}, year = {2018}, doi = {10.1016/j.redox.2018.06.006}, }

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