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Lipid Supplementation for Longevity and Gene Transcriptional Analysis in Caenorhabditis elegans
Published on: December 9, 2022
Statins Induce a DAF-16/Foxo-dependent Longevity Phenotype via JNK-1 through Mevalonate Depletion in C. elegans
Andreas Jahn1, Bo Scherer1, Gerhard Fritz1
1Heinrich Heine University Dusseldorf, Medical Faculty, Institute of Toxicology, D-40225 Dusseldorf, Germany.
Abstract:
Statins belong to the most pre-scribed cholesterol lowering drugs in western countries. Their competitive inhibition of the HMG-CoA reductase causes a reduction in the mevalonate pool, resulting in reduced cholesterol biosynthesis, impaired protein prenylation and glycosylation. Recently, a cohort study showed a decreased mortality rate in humans between age 78-90 going along with statin therapy, which is independent of blood cholesterol levels. As C. elegans harbors the mevalonate pathway, but is cholesterol-auxotroph, it is particularly suitable to study cholesterol-independent effects of statins on aging-associated phenotypes. Here, we show that low doses of lovastatin or a mild HMG-CoA reductase knockdown via hmgr-1(RNAi) in C. elegans substantially attenuate aging pigment accumulation, which is a well-established surrogate marker for biological age. Consistently, for two statins we found dosages, which prolonged the lifespan of C. elegans. Together with an observed reduced fertility, slower developmental timing and thermal stress resistance this complex of outcomes point to the involvement of DAF-16/hFOXO3a, the master regulator of stress resistance and longevity. Accordingly, prolonged low-dose statin exposure leads to an increased expression of jnk-1, a known activator of DAF-16. Moreover, the beneficial effects of statins on aging pigments and lifespan depend on DAF-16 and JNK-1, as shown in epistasis analyses. These effects can be reverted by mevalonate supplementation. In conclusion, we describe a lifespan extension in C. elegans, which is conferred via two well-conserved stress-related factors (JNK-1, DAF-16) and results from mevalonate depletion.
Insights
Statins, used to lower cholesterol, extend lifespan in C. elegans by depleting mevalonate. This process involves stress-related factors JNK-1 and DAF-16, independent of cholesterol levels.
Area of Science:
- Biogerontology
- Molecular Biology
- Pharmacology
Background:
- Statins are widely prescribed cholesterol-lowering drugs.
- Statin therapy shows potential for reduced mortality in elderly humans, independent of cholesterol levels.
- The nematode C. elegans is a suitable model for studying cholesterol-independent effects of statins due to its cholesterol auxotrophy.
Purpose of the Study:
- To investigate the cholesterol-independent effects of statins on aging in C. elegans.
- To elucidate the molecular mechanisms underlying statin-mediated aging phenotypes.
Main Methods:
- Low-dose lovastatin treatment and HMG-CoA reductase knockdown (hmgr-1 RNAi) in C. elegans.
- Assessment of aging pigment accumulation as a biomarker of biological age.
- Lifespan, fertility, developmental timing, and thermal stress resistance assays.
- Epistasis analyses involving DAF-16 and JNK-1 pathways.
- Mevalonate supplementation experiments.
Main Results:
- Low-dose statins and HMG-CoA reductase knockdown significantly reduced aging pigment accumulation.
- Specific statin dosages prolonged the lifespan of C. elegans.
- Statin treatment led to reduced fertility, slower development, and altered thermal stress resistance.
- The beneficial effects on aging pigments and lifespan were dependent on DAF-16 and JNK-1.
- These effects were reversible upon mevalonate supplementation.
Conclusions:
- Statin-induced lifespan extension in C. elegans is mediated by mevalonate depletion.
- The conserved stress-response factors JNK-1 and DAF-16 are crucial for mediating these beneficial effects.
- This study highlights potential therapeutic applications of statins beyond cholesterol reduction.
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