Aging varies among individuals due to both genetics and environment, but the underlying molecular mechanisms remain largely unknown. Using a highly recombined Saccharomyces cerevisiae population, we found 30 distinct quantitative trait loci (QTLs) that control chronological life span (CLS) in calorie-rich and calorie-restricted environments and under rapamycin exposure. Calorie restriction and rapamycin extended life span in virtually all genotypes but through different genetic variants. We tracked the two major QTLs to the cell wall glycoprotein genes FLO11 and HPF1. We found that massive expansion of intragenic tandem repeats within the N-terminal domain of HPF1 was sufficient to cause pronounced life span shortening. Life span impairment...
Knowledge of the mechanisms for regulating lifespan is advancing rapidly, but lifespan is a complex ...
The knowledge on the molecular aspects regulating ageing in eukaryotic organisms has benefitted grea...
In laboratory yeast strains with Sir2 and Fob1 function, wild-type NAD+ salvage is required for calo...
peer reviewedAging is a complex trait of broad scientific interest, especially because of its intrin...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2002.Includes bibliographi...
Aging is a complex trait of broad scientific interest, especially because of its intrinsic link with...
Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways. Here, w...
Based on the recent findings of the Titorenko laboratory, I hypothesized that caloric restriction sl...
SummaryIn nearly every organism studied, reduced caloric intake extends life span. In yeast, span ex...
Studies of replicative and chronological lifespan in Saccharomyces cerevisiae have advanced understa...
Dietary restriction (DR) has been shown to increase lifespan in organisms ranging from yeast to mamm...
<div><p>Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways....
The knowledge on the molecular aspects regulating ageing in eukaryotic organisms has benefitted grea...
Aging is a complex trait of broad scientific interest, especially because of its intrinsic link with...
S. cerevisiae plays a pivotal role as a model system in understanding the biochemistry and molecular...
Knowledge of the mechanisms for regulating lifespan is advancing rapidly, but lifespan is a complex ...
The knowledge on the molecular aspects regulating ageing in eukaryotic organisms has benefitted grea...
In laboratory yeast strains with Sir2 and Fob1 function, wild-type NAD+ salvage is required for calo...
peer reviewedAging is a complex trait of broad scientific interest, especially because of its intrin...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2002.Includes bibliographi...
Aging is a complex trait of broad scientific interest, especially because of its intrinsic link with...
Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways. Here, w...
Based on the recent findings of the Titorenko laboratory, I hypothesized that caloric restriction sl...
SummaryIn nearly every organism studied, reduced caloric intake extends life span. In yeast, span ex...
Studies of replicative and chronological lifespan in Saccharomyces cerevisiae have advanced understa...
Dietary restriction (DR) has been shown to increase lifespan in organisms ranging from yeast to mamm...
<div><p>Lifespan is influenced by a large number of conserved proteins and gene-regulatory pathways....
The knowledge on the molecular aspects regulating ageing in eukaryotic organisms has benefitted grea...
Aging is a complex trait of broad scientific interest, especially because of its intrinsic link with...
S. cerevisiae plays a pivotal role as a model system in understanding the biochemistry and molecular...
Knowledge of the mechanisms for regulating lifespan is advancing rapidly, but lifespan is a complex ...
The knowledge on the molecular aspects regulating ageing in eukaryotic organisms has benefitted grea...
In laboratory yeast strains with Sir2 and Fob1 function, wild-type NAD+ salvage is required for calo...