End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging.
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Inactivation of yeast Isw2 chromatin remodeling enzyme mimics longevity effect of calorie restriction via induction of genotoxic stress responseHigh-throughput analysis of yeast replicative aging using a microfluidic systemThe Natural Variation in Lifespans of Single Yeast Cells Is Related to Variation in Cell Size, Ribosomal Protein, and Division Time.A Comprehensive Analysis of Replicative Lifespan in 4,698 Single-Gene Deletion Strains Uncovers Conserved Mechanisms of Aging.Effects of an unusual poison identify a lifespan role for Topoisomerase 2 in Saccharomyces cerevisiae.Evidence for the hallmarks of human aging in replicatively aging yeast.Quasi-programmed aging of budding yeast: a trade-off between programmed processes of cell proliferation, differentiation, stress response, survival and death defines yeast lifespan.Microfluidic technologies for yeast replicative lifespan studies.Buffering the pH of the culture medium does not extend yeast replicative lifespan.Fundamental Characteristics of Single-Cell Aging in Diploid Yeast
P2860
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P2860
End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging.
description
2013 nî lūn-bûn
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2013年の論文
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2013年学术文章
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2013年学术文章
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2013年学术文章
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name
End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging.
@en
type
label
End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging.
@en
prefLabel
End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging.
@en
P2093
P2860
P356
P1433
P1476
End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging.
@en
P2093
Adrienne M Wang
Alex Schuster
Annie Chou
Anthony S Castanza
Benjamin L Spector
Brady Olsen
Brian K Kennedy
Brian M Wasko
Christopher Murakami
Daniel Carr
P2860
P304
P356
10.1111/1567-1364.12030
P577
2013-02-20T00:00:00Z