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Links from GEO DataSets

Items: 8

1.

Expression data from tibialis anterior muscle of mice with or without treatment of dexamethasone and/or tumeric extract

(Submitter supplied) Sarcopenia is the decline in skeletal muscle mass, strength, and functions, which decreases the quality of life in elderly people. This study investigated the suppressive effect of turmeric (Curcuma longa) extract (TE) on muscle atrophy in dexamethasone (DEX)-treated mice and C2C12 myotubes. DEX treatment significantly decreased the muscle weight and significantly increased Fbxo32 and Murf1 expression in mice, and these changes were suppressed by the supplementation of an AIN-93 based diet with 2% TE. more...
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL1261
9 Samples
Download data: CEL
Series
Accession:
GSE209528
ID:
200209528
2.

Genome-wide analysis of denervation and dexamethasone-responsive gene expression in mouse triceps surae muscle

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL6105
48 Samples
Download data
Series
Accession:
GSE44259
ID:
200044259
3.

Genome-wide analysis of dexamethasone-responsive gene expression in mouse triceps surae muscle

(Submitter supplied) Analysis of dexamethasone-regulation of muscle mass at gene expression level. The hypothesis tested in the present study was that the presence of MuRF1 contributes to the extent of gene expression changes observed in specific sets of genes during a challenge leading to muscle atrophy. Results provide important information on the response of triceps surae muscle to synthetic glucocorticoid treatment, such as specific cell signaling and metabolic enzyme genes, that may be influenced by MuRF1 during atrophy.
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL6105
24 Samples
Download data: TXT
Series
Accession:
GSE44208
ID:
200044208
4.

Genome-wide analysis of denervation induced gene expression in mouse triceps surae muscle

(Submitter supplied) Analysis of denervation induced regulation of muscle mass at gene expression level. The hypothesis tested in the present study was that the presence of MuRF1 contributes to the extent of gene expression changes observed in specific sets of genes during a challenge leading to muscle atrophy. Results provide important information on the response of triceps surae muscle to sciatic nerve resection (denervation), such as specific structural, metabolic, and neuromuscular junction associated genes, that may be influenced by MuRF1 during atrophy.
Organism:
Mus musculus
Type:
Expression profiling by array
Platform:
GPL6105
24 Samples
Download data: TXT
Series
Accession:
GSE44205
ID:
200044205
5.

KLF5 on dexamethasone-mediated atrophy in mouse satellite cells

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL18480
12 Samples
Download data: BEDGRAPH
Series
Accession:
GSE165072
ID:
200165072
6.

Analysis of effects of KLF5 on dexamethasone-mediated atrophy in mouse satellite cells [RNA]

(Submitter supplied) We analyzed effects of dexamethasone (Dex) on primary satellite cells (SCs) purified from control and MCK-Cre:Klf5f/f mice.
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL18480
8 Samples
Download data: BEDGRAPH
Series
Accession:
GSE165071
ID:
200165071
7.

Analysis of accessible chromatin regions in response to dexamethasone mediated-atrophy in mouse satellite cells [ATAC]

(Submitter supplied) We analyzed the accessible chromatin regions globally in response to dexamethasone in primary mouse satellite cells (SCs)
Organism:
Mus musculus
Type:
Genome binding/occupancy profiling by high throughput sequencing
Platform:
GPL18480
4 Samples
Download data: BEDGRAPH
Series
Accession:
GSE165070
ID:
200165070
8.

Klf5 regulates muscle differentiation via directly targeted muscle-specific genes in cooperation with MyoD in mice

(Submitter supplied) Deletion of Klf5 in satellite cells impaired muscle regeneration due to a failure of differentiation. Mechanistically, Klf5 controls transcription of muscle genes by interacting with MyoD and Mef2. These findings provide a potential intervention into the process of muscle regeneration through modulation of Klf5.
Organism:
Mus musculus
Type:
Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing
Platforms:
GPL13112 GPL18480
14 Samples
Download data: BEDGRAPH, TXT, XLS
Series
Accession:
GSE80812
ID:
200080812
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Supplemental Content

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