Transcriptomics

Dataset Information

0

Loss of G9a in myofiber accelerates muscle regeneration


ABSTRACT: Age-related muscle regenerative capacity decline is related to the disruption of the Injured skeletal muscle regenerates through a network orchestrated by multiple muscle-harbored cell types, however, yet the contribution of the interplay between macrophages and myofibers upon injuryto this process is largely unknown. Deletion of G9a in myofiber mitigates muscle aging and accelerates muscle regeneration. Mechanistically, by deleting Osteocrin (musclin-encoding) in myofiber-specific G9a knockout background, we found G9a suppresses myofiber-derived musclin to inhibit myogenesis and macrophage phenotype transition during muscle regeneration.Musclin recombination protein accelerated muscle regeneration. Collectively, we highlight an epigenetic mechanism that links muscle aging to muscle regeneration, G9a serves an epigenetic hallmark of muscle aging and a the crosstalk between myofibers and macrophages , both regulated by G9a, steers a pro-recovery microenvironment after muscle injury, which offers therapeutic potentials for muscle regenerative capacity decline in the aged.

ORGANISM(S): Mus musculus

PROVIDER: GSE299523 | GEO | 2026/08/19

REPOSITORIES: GEO

Dataset's files

Source:
Action DRS
Other
Items per page:
1 - 1 of 1

Similar Datasets

2021-01-07 | GSE149637 | GEO
2023-06-12 | GSE180225 | GEO
2024-02-27 | PXD036993 | Pride
2013-12-31 | E-GEOD-53726 | biostudies-arrayexpress
2013-12-31 | E-GEOD-53724 | biostudies-arrayexpress
| PRJNA1274901 | ENA
2013-12-31 | E-GEOD-53725 | biostudies-arrayexpress
2022-01-08 | GSE193089 | GEO
2012-04-24 | E-GEOD-37479 | biostudies-arrayexpress
2013-12-31 | GSE53726 | GEO