| Keyword search (4,163 papers available) | ![]() |
"geroprotectors" Keyword-tagged Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | Diverse geroprotectors differently affect a mechanism linking cellular aging to cellular quiescence in budding yeast | Leonov A; Feldman R; Piano A; Arlia-Ciommo A; Junio JAB; Orfanos E; Tafakori T; Lutchman V; Mohammad K; Elsaser S; Orfali S; Rajen H; Titorenko VI; | 35937500 BIOLOGY |
| 2 | Caloric restriction causes a distinct reorganization of the lipidome in quiescent and non-quiescent cells of budding yeast | Mohammad K; Orfanos E; Titorenko VI; | 34853658 BIOLOGY |
| 3 | Caloric restriction creates a metabolic pattern of chronological aging delay that in budding yeast differs from the metabolic design established by two other geroprotectors | Mohammad K; Titorenko VI; | 33868583 BIOLOGY |
| 4 | Discovery of fifteen new geroprotective plant extracts and identification of cellular processes they affect to prolong the chronological lifespan of budding yeast. | Dakik P, Rodriguez MEL, Junio JAB, Mitrofanova D, Medkour Y, Tafakori T, Taifour T, Lutchman V, Samson E, Arlia-Ciommo A, Rukundo B, Simard É, Titorenko VI | 32577164 BIOLOGY |
| 5 | Mechanisms by which PE21, an extract from the white willow Salix alba, delays chronological aging in budding yeast. | Medkour Y, Mohammad K, Arlia-Ciommo A, Svistkova V, Dakik P, Mitrofanova D, Rodriguez MEL, Junio JAB, Taifour T, Escudero P, Goltsios FF, Soodbakhsh S, Maalaoui H, Simard É, Titorenko VI | 31645900 BIOLOGY |
| 6 | Mechanisms through which lithocholic acid delays yeast chronological aging under caloric restriction conditions. | Arlia-Ciommo A, Leonov A, Mohammad K, Beach A, Richard VR, Bourque SD, Burstein MT, Goldberg AA, Kyryakov P, Gomez-Perez A, Koupaki O, Titorenko VI | 30405886 BIOLOGY |
| 7 | Pairwise combinations of chemical compounds that delay yeast chronological aging through different signaling pathways display synergistic effects on the extent of aging delay. | Dakik P, McAuley M, Chancharoen M, Mitrofanova D, Lozano Rodriguez ME, Baratang Junio JA, Lutchman V, Cortes B, Simard É, Titorenko VI | 30719227 BIOLOGY |
| Title: | Caloric restriction causes a distinct reorganization of the lipidome in quiescent and non-quiescent cells of budding yeast | ||||
| Authors: | Mohammad K, Orfanos E, Titorenko VI | ||||
| Link: | https://pubmed.ncbi.nlm.nih.gov/34853658/ | ||||
| DOI: | 10.18632/oncotarget.28133 | ||||
| Publication: | Oncotarget | ||||
| Keywords: | caloric restriction; cellular aging; cellular quiescence; geroprotectors; lipids; | ||||
| PMID: | 34853658 | Category: | Date Added: | 2021-12-02 | |
| Dept Affiliation: |
BIOLOGY
1 Department of Biology, Concordia University, Montreal, Quebec H4B 1R6, Canada. |
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Description: |
After budding yeast cells cultured in a nutrient-rich liquid medium with 0.2% glucose (under caloric restriction conditions) or 2% glucose (under non-caloric restriction conditions), ferment glucose to ethanol and then consume ethanol, they enter the stationary phase. The process of their chronological aging begins. At that point, the yeast culture starts to accumulate quiescent and non-quiescent cells. Here, we purified the high- and low-density populations of quiescent and non-quiescent cells from the yeast cultures limited in calorie supply or not. We then employed mass spectrometry-based quantitative lipidomics to assess the aging-associated changes in high- and low-density cells' lipidomes. We found that caloric restriction, a geroprotective dietary intervention, alters the concentrations of many lipid classes through most of the chronological lifespan of the high- and low-density populations of quiescent and non-quiescent cells. Specifically, caloric restriction decreased triacylglycerol, increased free fatty acid, elevated phospholipid and amplified cardiolipin concentrations. Based on these findings, we propose a hypothetical model for a caloric restriction-dependent reorganization of lipid metabolism in budding yeast's quiescent and non-quiescent cells. We also discovered that caloric restriction creates lipidomic patterns of these cells that differ from those established by two other robust geroprotectors, namely the tor1? mutation and lithocholic acid. |



