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4 Long-lasting antimicrobial effect of multipurpose ZnO nanoparticle-loaded dental resins enhanced by blue light photodynamic therapy Leite ML; Comeau P; Zaghwan A; Shen Y; Manso AP; 39765362
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5 Examining Dimensionality and Item-Quality of the Eating Disorder Examination Questionnaire in Individuals With Eating Disorders Using Item Response Theory Analysis Dufour R; Steiger H; Booij L; 39548958
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6 Overlooked Role of Bulk Nanobubbles in the Alteration and Motion of Microplastics in the Ocean Environment Wang Z; An C; Lee K; Feng Q; 37477614
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7 Impact Behaviour of Steel-Fibre-Reinforced Alkali-Activated Slag Concrete Exposed to Elevated Temperatures Abubakr A; Soliman A; 37297228
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8 Artificial aging induced changes in biochar,s properties and Cd2+ adsorption behaviors Wang Z; Bian Y; Xu Y; Zheng C; Jiang Q; An C; 36251198
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9 Cancer-Nano-Interaction: From Cellular Uptake to Mechanobiological Responses Sohrabi Kashani A; Packirisamy M; 34502495
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10 Elucidating the mechanism of dual-fluorescence in carbon dots Macairan JR; de Medeiros TV; Gazzetto M; Yarur Villanueva F; Cannizzo A; Naccache R; 34388574
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11 Mechanisms that Link Chronological Aging to Cellular Quiescence in Budding Yeast. Mohammad K, Baratang Junio JA, Tafakori T, Orfanos E, Titorenko VI 32630624
BIOLOGY
12 Distributed vibration isolation and manual dexterity of anti-vibration gloves: Is there a correlation? Yao Y, Rakheja S, Marcotte P 32250726
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Title:Mechanisms that Link Chronological Aging to Cellular Quiescence in Budding Yeast.
Authors:Mohammad KBaratang Junio JATafakori TOrfanos ETitorenko VI
Link:https://www.ncbi.nlm.nih.gov/pubmed/32630624?dopt=Abstract
DOI:10.3390/ijms21134717
Publication:International journal of molecular sciences
Keywords:caloric restrictioncell cyclecellular agingcellular quiescencemetabolismproperties of quiescent yeastquiescence entryquiescence maintenanceyeastyeast chronological aging
PMID:32630624 Category:Int J Mol Sci Date Added:2020-07-08
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, Montreal, QC H4B 1R6, Canada.

Description:

Mechanisms that Link Chronological Aging to Cellular Quiescence in Budding Yeast.

Int J Mol Sci. 2020 Jul 02;21(13):

Authors: Mohammad K, Baratang Junio JA, Tafakori T, Orfanos E, Titorenko VI

Abstract

After Saccharomyces cerevisiae cells cultured in a medium with glucose consume glucose, the sub-populations of quiescent and non-quiescent cells develop in the budding yeast culture. An age-related chronology of quiescent and non-quiescent yeast cells within this culture is discussed here. We also describe various hallmarks of quiescent and non-quiescent yeast cells. A complex aging-associated program underlies cellular quiescence in budding yeast. This quiescence program includes a cascade of consecutive cellular events orchestrated by an intricate signaling network. We examine here how caloric restriction, a low-calorie diet that extends lifespan and healthspan in yeast and other eukaryotes, influences the cellular quiescence program in S. cerevisiae. One of the main objectives of this review is to stimulate an exploration of the mechanisms that link cellular quiescence to chronological aging of budding yeast. Yeast chronological aging is defined by the length of time during which a yeast cell remains viable after its growth and division are arrested, and it becomes quiescent. We propose a hypothesis on how caloric restriction can slow chronological aging of S. cerevisiae by altering the chronology and properties of quiescent cells. Our hypothesis posits that caloric restriction delays yeast chronological aging by targeting four different processes within quiescent cells.

PMID: 32630624 [PubMed - in process]





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