Increasing genomic instability is associated with aging in eukaryotes, but the connection between genomic instability and natural variation in life span is unknown. We have quantified chronological life span and loss-of-heterozygosity (LOH) in 11 natural isolates of Saccharomyces cerevisiae. We show that genomic instability increases and mitotic asymmetry breaks down during chronological aging. The age-dependent increase of genomic instability generally lags behind the drop of viability and this delay accounts for approximately 50% of the observed natural variation of replicative life span in these yeast isolates. We conclude that the abilities of yeast strains to tolerate genomic instability co-vary with their replicative life spans. To th...
The budding yeast Saccharomyces cerevisiae divides asymmetrically, producing a new daughter cell fro...
Saccharomyces cerevisiae is one of the most studied model organisms for the identification of genes ...
International audienceSaccharomyces cerevisiae is the simplest among the major eukaryotic model orga...
Aging brings a gradual decline in molecular fidelity and biological functionality, resulting in age ...
AbstractIn the September 26 issue of Science, McMurray and Gottschling (2003) report that aged yeast...
There is a striking link between increasing age and the incidence of cancer in humans. One of the ha...
Aging is a complex trait of broad scientific interest, especially because of its intrinsic link with...
The concept that mutations cause aging phenotypes could not be directly tested previously due to ina...
Yeast mother cell-specific ageing is characterized by a limited capacity to produce daughter cells. ...
There is a large variability in lifespans of individuals even if they are genetically identical and ...
Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways. Here, w...
International audienceSaccharomyces cerevisiae is the simplest among the major eukaryotic model orga...
Recently, efforts have been made to characterize the hallmarks that accompany and contribute to the ...
Recently, efforts have been made to characterize the hallmarks that accompany and contribute to the ...
AbstractSaccharomyces cerevisiae is the simplest among the major eukaryotic model organisms for agin...
The budding yeast Saccharomyces cerevisiae divides asymmetrically, producing a new daughter cell fro...
Saccharomyces cerevisiae is one of the most studied model organisms for the identification of genes ...
International audienceSaccharomyces cerevisiae is the simplest among the major eukaryotic model orga...
Aging brings a gradual decline in molecular fidelity and biological functionality, resulting in age ...
AbstractIn the September 26 issue of Science, McMurray and Gottschling (2003) report that aged yeast...
There is a striking link between increasing age and the incidence of cancer in humans. One of the ha...
Aging is a complex trait of broad scientific interest, especially because of its intrinsic link with...
The concept that mutations cause aging phenotypes could not be directly tested previously due to ina...
Yeast mother cell-specific ageing is characterized by a limited capacity to produce daughter cells. ...
There is a large variability in lifespans of individuals even if they are genetically identical and ...
Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways. Here, w...
International audienceSaccharomyces cerevisiae is the simplest among the major eukaryotic model orga...
Recently, efforts have been made to characterize the hallmarks that accompany and contribute to the ...
Recently, efforts have been made to characterize the hallmarks that accompany and contribute to the ...
AbstractSaccharomyces cerevisiae is the simplest among the major eukaryotic model organisms for agin...
The budding yeast Saccharomyces cerevisiae divides asymmetrically, producing a new daughter cell fro...
Saccharomyces cerevisiae is one of the most studied model organisms for the identification of genes ...
International audienceSaccharomyces cerevisiae is the simplest among the major eukaryotic model orga...