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Carnitine promotes recovery from oxidative stress and extends lifespan in C. elegans.


ABSTRACT: Carnitine is required for transporting fatty acids into the mitochondria for ?-oxidation. Carnitine has been used as an energy supplement but the roles in improving health and delaying aging remain unclear. Here we show in C. elegans that L-carnitine improves recovery from oxidative stress and extends lifespan. L-carnitine promotes recovery from oxidative stress induced by paraquat or juglone and improves mobility and survival in response to H2O2 and human amyloid (A?) toxicity. L-carnitine also alleviates the oxidative stress during aging, resulting in moderate but significant lifespan extension, which was dependent on SKN-1 and DAF-16. Long-lived worms with germline loss (glp-1) or reduced insulin receptor activity (daf-2) recover from aging-associated oxidative stress faster than wild-type controls and their long lifespans were not further increased by L-carnitine. A new gene, T08B1.1, aligned to a known carnitine transporter OCTN1 in humans, is required for L-carnitine uptake in C. elegans. T08B1.1 expression is elevated in daf-2 and glp-1 mutants and its knockdown prevents L-carnitine from improving oxidative stress recovery and prolonging lifespan. Together, our study suggests an important role of L-carnitine in oxidative stress recovery that might be important for healthy aging in humans.

SUBMITTER: Liu D 

PROVIDER: S-EPMC7835055 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Carnitine promotes recovery from oxidative stress and extends lifespan in <i>C. elegans</i>.

Liu Dongliang D   Zeng Xiaofang X   Li Le L   Ou Zheng-Lin ZL  

Aging 20201203 1


Carnitine is required for transporting fatty acids into the mitochondria for β-oxidation. Carnitine has been used as an energy supplement but the roles in improving health and delaying aging remain unclear. Here we show in <i>C. elegans</i> that L-carnitine improves recovery from oxidative stress and extends lifespan. L-carnitine promotes recovery from oxidative stress induced by paraquat or juglone and improves mobility and survival in response to H<sub>2</sub>O<sub>2</sub> and human amyloid (A  ...[more]

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