Skip to content
Open access · CC-BY via OpenAlex

Ether lipid biosynthesis promotes lifespan extension and enables diverse pro-longevity paradigms in Caenorhabditis elegans

Lucydalila Cedillo, Fasih M. Ahsan, Sainan Li, Nicole L. Stuhr, Yifei Zhou, Yuyao Zhang, Adebanjo Adedoja, Luke M. Murphy, Armen Yerevanian, Sinclair Emans, Khoi Dao, Zhaozhi Li, Nicholas Peterson, Jeramie D. Watrous, Mohit Jain

eLife · 2023 · ▲ 43 citations

Abstract

Biguanides, including the world’s most prescribed drug for type 2 diabetes, metformin, not only lower blood sugar, but also promote longevity in preclinical models. Epidemiologic studies in humans parallel these findings, indicating favorable effects of metformin on longevity and on reducing the incidence and morbidity associated with aging-related diseases. Despite this promise, the full spectrum of molecular effectors responsible for these health benefits remains elusive. Through unbiased screening in Caenorhabditis elegans , we uncovered a role for genes necessary for ether lipid biosynthesis in the favorable effects of biguanides. We demonstrate that biguanides prompt lifespan extension by stimulating ether lipid biogenesis. Loss of the ether lipid biosynthetic machinery also mitigates lifespan extension attributable to dietary restriction, target of mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">rapamycin(definition) (TOR) inhibition, and mitochondrial electron transport chain inhibition. A possible mechanistic explanation for this finding is that ether lipids are required for activation of longevity-promoting, metabolic stress defenses downstream of the conserved transcription factor skn-1 /Nrf. In alignment with these findings, overexpression of a single, key, ether lipid biosynthetic enzyme, fard-1 /FAR1, is sufficient to promote lifespan extension. These findings illuminate the ether lipid biosynthetic machinery as a novel therapeutic target to promote healthy aging.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.7554/elife.82210
Canonical
link ↗
Fetched
2026-07-28 MST

Cite this

APA
Cedillo, L., Ahsan, F.M., Li, S., Stuhr, N.L., Zhou, Y., Zhang, Y., Adedoja, A., Murphy, L.M., Yerevanian, A., Emans, S., Dao, K., Li, Z., Peterson, N., Watrous, J.D., Jain, M., Das, S., Pukkila-Worley, R., Curran, S.P., &amp; Soukas, A.A. (2023). Ether lipid biosynthesis promotes lifespan extension and enables diverse pro-longevity paradigms in Caenorhabditis elegans. <em>eLife</em>. https://doi.org/10.7554/elife.82210
Vancouver
Cedillo L, Ahsan FM, Li S, Stuhr NL, Zhou Y, Zhang Y, et al. Ether lipid biosynthesis promotes lifespan extension and enables diverse pro-longevity paradigms in Caenorhabditis elegans. eLife. 2023. doi:10.7554/elife.82210.
BibTeX
@article{lucydalila2023Etherl, title = {Ether lipid biosynthesis promotes lifespan extension and enables diverse pro-longevity paradigms in Caenorhabditis elegans}, author = {Lucydalila Cedillo and Fasih M. Ahsan and Sainan Li and Nicole L. Stuhr and Yifei Zhou and Yuyao Zhang and Adebanjo Adedoja and Luke M. Murphy and Armen Yerevanian and Sinclair Emans and Khoi Dao and Zhaozhi Li and Nicholas Peterson and Jeramie D. Watrous and Mohit Jain and Sudeshna Das and Read Pukkila-Worley and Sean P. Curran and Alexander A. Soukas}, journal = {eLife}, year = {2023}, doi = {10.7554/elife.82210}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings