Open access · CC-BY
via OpenAlex
Availability of Amino Acids Extends Chronological Lifespan by Suppressing Hyper-Acidification of the Environment in Saccharomyces cerevisiae
Yo Maruyama, Toshiyuki Ito, Hiroaki Kodama, Akira Matsuura
PLoS ONE · 2016 · ▲ 33 citations
Abstract
The chronological lifespan of Saccharomyces cerevisiae represents the duration of cell survival in the postdiauxic and stationary phases. Using a prototrophic strain derived from the standard auxotrophic laboratory strain BY4742, we showed that supplementation of non-essential amino acids to a synthetic defined (SD) medium increases maximal cell growth and extends the chronological lifespan. The positive effects of amino acids can be reproduced by modulating the medium pH, indicating that amino acids contribute to chronological longevity in a cell-extrinsic manner by alleviating medium acidification. In addition, we showed that the amino acid-mediated effects on extension of chronological longevity are independent of those achieved through a reduction in the TORC1 pathway, which is mediated in a cell-intrinsic manner. Since previous studies showed that extracellular acidification causes mitochondrial dysfunction(definition) and leads to cell death, our results provide a path to premature chronological aging caused by differences in available nitrogen sources. Moreover, acidification of culture medium is generally associated with culture duration and cell density; thus, further studies are required on cell physiology of auxotrophic yeast strains during the stationary phase because an insufficient supply of essential amino acids may cause alterations in environmental conditions.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1371/journal.pone.0151894
- Canonical
- link ↗
- Fetched
- 2026-07-15 MST
Cite this
APA
Maruyama, Y., Ito, T., Kodama, H., & Matsuura, A. (2016). Availability of Amino Acids Extends Chronological Lifespan by Suppressing Hyper-Acidification of the Environment in Saccharomyces cerevisiae. <em>PLoS ONE</em>. https://doi.org/10.1371/journal.pone.0151894
Vancouver
Maruyama Y, Ito T, Kodama H, Matsuura A. Availability of Amino Acids Extends Chronological Lifespan by Suppressing Hyper-Acidification of the Environment in Saccharomyces cerevisiae. PLoS ONE. 2016. doi:10.1371/journal.pone.0151894.
BibTeX
@article{yo2016Availa,
title = {Availability of Amino Acids Extends Chronological Lifespan by Suppressing Hyper-Acidification of the Environment in Saccharomyces cerevisiae},
author = {Yo Maruyama and Toshiyuki Ito and Hiroaki Kodama and Akira Matsuura},
journal = {PLoS ONE},
year = {2016},
doi = {10.1371/journal.pone.0151894},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
F1000Research 2013
Open access · CC-BY
Buffering the pH of the culture medium does not extend yeast replicative lifespan
PLoS ONE 2011
Open access · CC-BY
Composition and Acidification of the Culture Medium Influences Chronological Aging Similarly in Vineyard and Laboratory Yeast
PLoS ONE 2012
Open access · CC-BY
Ammonium Is Toxic for Aging Yeast Cells, Inducing Death and Shortening of the Chronological Lifespan
PLoS ONE 2013
Open access · CC-BY
Independent and Additive Effects of Glutamic Acid and Methionine on Yeast Longevity
Oxidative Medicine and Cellular Longevity 2012
Open access · CC-BY
Growth Culture Conditions and Nutrient Signaling Modulating Yeast Chronological Longevity
PLoS ONE 2013
Open access · CC-BY