Genomics

Dataset Information

0

A non-canonical Notch ligand mediates cell-non-autonomous DAF-16/FOXO activity in antagonizing age-related loss of C. elegans germline stem/progenitor cells


ABSTRACT: Age-related depletion of stem cells causes tissue degeneration and failure to tissue regeneration, driving aging at the organismal level. Previously we reported a cell-non-autonomous DAF-16/FOXO activity in antagonizing the age-related loss of germline stem/progenitor cells (GSPCs) in C. elegans, indicating that regulation of stem cell aging can occur at the organ system level. Here we discover the molecular effector that links the cell-non-autonomous DAF-16/FOXO activity to GSPC maintenance over time by performing a tissue-specific DAF-16/FOXO transcriptome analysis. Our data show that dos-3, which encodes a non-canonical Notch ligand, is a direct transcriptional target of DAF-16/FOXO and mediates the effect of the cell-non-autonomous DAF-16/FOXO activity on GSPC maintenance through activating Notch signaling in the germ line. Importantly, expression of a human homologous protein can functionally substitute for DOS-3 in this scenario. As Notch signaling controls the specification of many tissue stem cells, similar mechanisms may exist in other aging stem cell systems.

ORGANISM(S): Caenorhabditis elegans

PROVIDER: GSE243994 | GEO | 2024/02/29

REPOSITORIES: GEO

Similar Datasets

2014-11-18 | GSE51162 | GEO
2014-11-18 | GSE51161 | GEO
2014-11-18 | E-GEOD-51161 | biostudies-arrayexpress
2015-08-27 | E-GEOD-72426 | biostudies-arrayexpress
2014-11-18 | E-GEOD-51162 | biostudies-arrayexpress
2015-08-27 | GSE72426 | GEO
2021-10-09 | GSE179166 | GEO
2016-05-27 | GSE69329 | GEO
2023-03-09 | GSE198939 | GEO
2023-10-04 | GSE244494 | GEO