Tetramethylpyrazine nitrone TBN extends the lifespan of C. elegans by activating the Nrf2/SKN-1 signaling pathway

SKN-1, the ortholog of mammalian Nrf2 proteins, is a transcription factor that plays an important role in oxidative stress resistance and longevity. Similar to other defense systems, the Nrf2-mediated stress response is compromised in aging and neurodegenerative diseases. Our previous studies demons...

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Veröffentlicht in:Biochemical and biophysical research communications 2022-07, Vol.614, p.107-113
Hauptverfasser: Wang, Ting, Jing, Mei, Zhang, Ting, Zhang, Zaijun, Sun, Yewei, Wang, Yuqiang
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Sprache:eng
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Zusammenfassung:SKN-1, the ortholog of mammalian Nrf2 proteins, is a transcription factor that plays an important role in oxidative stress resistance and longevity. Similar to other defense systems, the Nrf2-mediated stress response is compromised in aging and neurodegenerative diseases. Our previous studies demonstrated that tetramethylpyrazine nitrone (TBN), a derivative of tetramethylpyrazine armed with a potent free radical-scavenging nitrone moiety, exerted multifunctional neuroprotection in neurological and other diseases. However, the ability of TBN to extend a healthy lifespan and its underlying mechanisms of action are not yet clear. C. elegans have become a popular animal model in aging research. Herein, we demonstrate that TBN can extend the lifespan, promote age-associated health indicators, and restore mitochondrial function in C. elegans. TBN also significantly reduced ROS levels and superoxide accumulation in C. elegans. We show that TBN-mediated lifespan extension is SKN-1dependent. The present study provides valuable insights into the mechanisms by which TBN inhibits aging via the Nrf2/SKN-1 pathway in C. elegans. •TBN has significant antioxidative activity in C. elegans.•TBN ameliorates age-related mitochondrial dysfunction in C. elegans.•TBN-mediated lifespan extension of C. elegans by activating the Nrf2.
ISSN:0006-291X
1090-2104
DOI:10.1016/j.bbrc.2022.05.009