Stress is a fundamental aspect of aging, as accumulated damage from a lifetime of stress can limit lifespan and protective responses to stress can extend lifespan. In this study, we identify a conserved Caenorhabditis elegans GATA transcription factor, egl-27, that is involved in several stress responses and aging. We found that overexpression of egl-27 extends the lifespan of wild-type animals. Furthermore, egl-27 is required for the pro-longevity effects from impaired insulin/IGF-1 like signaling (IIS), as reduced egl-27 activity fully suppresses the longevity of worms that are mutant for the IIS receptor, daf-2. egl-27 expression is inhibited by daf-2 and activated by pro-longevity factors daf-16/FOXO and elt-3/GATA, suggesting that egl-...
Aging is recognized as a major risk factor for many diseases. Thus, the identification of a means to...
Key discoveries in aging research have been made possible with the use of model organisms. Caenorhab...
SummaryC. elegans SIR-2.1, a member of the Sir-2 family of NAD+-dependent protein deacetylases, has ...
<div><p>Stress is a fundamental aspect of aging, as accumulated damage from a lifetime of stress can...
Aging is associated with a large number of both phenotypic and molecular changes, but for most of th...
International audienceCaenorhabditis elegans life span, stress resistance and metabolism are regulat...
International audienceCaenorhabditis elegans life span, stress resistance and metabolism are regulat...
AbstractAging and limited life span are fundamental biological phenomena observed in a variety of sp...
Aging is a complex process influenced by the environment and genotype. Numerous conserved genetic pa...
SummaryThe longevity of Caenorhabditis elegans is promoted by extra copies of the sir-2.1 gene in a ...
The roles and regulatory mechanisms of transcriptome changes during aging are unclear. It has been p...
Aging is recognized as a major risk factor for many diseases. Thus, the identification of a means to...
AbstractIn Caenorhabditis elegans, an insulin-like signaling pathway, which includes the daf-2 and a...
Protein homeostasis is modulated by stress response pathways and its deficiency is a hallmark of agi...
SummaryTo define the C. elegans aging process at the molecular level, we used DNA microarray experim...
Aging is recognized as a major risk factor for many diseases. Thus, the identification of a means to...
Key discoveries in aging research have been made possible with the use of model organisms. Caenorhab...
SummaryC. elegans SIR-2.1, a member of the Sir-2 family of NAD+-dependent protein deacetylases, has ...
<div><p>Stress is a fundamental aspect of aging, as accumulated damage from a lifetime of stress can...
Aging is associated with a large number of both phenotypic and molecular changes, but for most of th...
International audienceCaenorhabditis elegans life span, stress resistance and metabolism are regulat...
International audienceCaenorhabditis elegans life span, stress resistance and metabolism are regulat...
AbstractAging and limited life span are fundamental biological phenomena observed in a variety of sp...
Aging is a complex process influenced by the environment and genotype. Numerous conserved genetic pa...
SummaryThe longevity of Caenorhabditis elegans is promoted by extra copies of the sir-2.1 gene in a ...
The roles and regulatory mechanisms of transcriptome changes during aging are unclear. It has been p...
Aging is recognized as a major risk factor for many diseases. Thus, the identification of a means to...
AbstractIn Caenorhabditis elegans, an insulin-like signaling pathway, which includes the daf-2 and a...
Protein homeostasis is modulated by stress response pathways and its deficiency is a hallmark of agi...
SummaryTo define the C. elegans aging process at the molecular level, we used DNA microarray experim...
Aging is recognized as a major risk factor for many diseases. Thus, the identification of a means to...
Key discoveries in aging research have been made possible with the use of model organisms. Caenorhab...
SummaryC. elegans SIR-2.1, a member of the Sir-2 family of NAD+-dependent protein deacetylases, has ...