Open access · OA
via OpenAlex
Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan
Michelle T. Burstein, Pavlo Kyryakov, Adam Beach, Vincent R. Richard, Olivia Koupaki, Alejandra Gomez-Perez, Anna Leonov, Sean Levy, Forough Noohi, Vladimir I. Titorenko
Cell Cycle · 2012 · ▲ 55 citations
Abstract
Our studies revealed that LCA (lithocholic bile acid) extends yeast chronological lifespan if added to growth medium at the time of cell inoculation. We also demonstrated that longevity in chronologically aging yeast is programmed by the level of metabolic capacity and organelle organization that they developed before entering a quiescent state and, thus, that chronological aging in yeast is likely to be the final step of a developmental program progressing through at least one checkpoint prior to entry into quiescence. Here, we investigate how LCA influences longevity and several longevity-defining cellular processes in chronologically aging yeast if added to growth medium at different periods of the lifespan. We found that LCA can extend longevity of yeast under CR (caloric restriction(definition)) conditions only if added at either of two lifespan periods. One of them includes logarithmic and diauxic growth phases, whereas the other period exists in early stationary phase. Our findings suggest a mechanism linking the ability of LCA to increase the lifespan of CR yeast only if added at either of the two periods to its differential effects on various longevity-defining processes. In this mechanism, LCA controls these processes at three checkpoints that exist in logarithmic/diauxic, post-diauxic and early stationary phases. We therefore hypothesize that a biomolecular longevity network progresses through a series of checkpoints, at each of which (1) genetic, dietary and pharmacological anti-aging interventions modulate a distinct set of longevity-defining processes comprising the network; and (2) checkpoint-specific master regulators monitor and govern the functional states of these processes.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.4161/cc.21754
- Canonical
- link ↗
- Fetched
- 2026-09-07 MST
Cite this
APA
Burstein, M.T., Kyryakov, P., Beach, A., Richard, V.R., Koupaki, O., Gomez-Perez, A., Leonov, A., Levy, S., Noohi, F., & Titorenko, V.I. (2012). Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan. <em>Cell Cycle</em>. https://doi.org/10.4161/cc.21754
Vancouver
Burstein MT, Kyryakov P, Beach A, Richard VR, Koupaki O, Gomez-Perez A, et al. Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan. Cell Cycle. 2012. doi:10.4161/cc.21754.
BibTeX
@article{michelle2012Lithoc,
title = {Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan},
author = {Michelle T. Burstein and Pavlo Kyryakov and Adam Beach and Vincent R. Richard and Olivia Koupaki and Alejandra Gomez-Perez and Anna Leonov and Sean Levy and Forough Noohi and Vladimir I. Titorenko},
journal = {Cell Cycle},
year = {2012},
doi = {10.4161/cc.21754},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Microbial Cell 2014
Open access · CC-BY
Cell-autonomous mechanisms of chronological aging in the yeast Saccharomyces cerevisiae
International Journal of Molecular Sciences 2020
Open access · CC-BY
Mechanisms that Link Chronological Aging to Cellular Quiescence in Budding Yeast
Frontiers in Bioscience-Elite 2011
Open access · OA
Role of sirtuins, calorie restriction and physical activity in aging
F1000Research 2013
Open access · CC-BY
Buffering the pH of the culture medium does not extend yeast replicative lifespan
npj Aging and Mechanisms of Disease 2016
Open access · CC-BY
Yeast longevity promoted by reversing aging-associated decline in heavy isotope content
Journal of Visualized Experiments 2009
Open access · OA