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Cardiolipin (CL) is a mitochondria-specific phospholipid essential for inner membrane architecture and respiratory chain function. To determine how loss of CL biosynthesis affects skeletal muscle transcriptional programs in a fiber-type-dependent manner, we generated skeletal muscle-specific Crls1 k...
ORGANISM(S): Mus musculus 
Fed and fasted skeletal muscle of wildtype and PGC-1beta muscle specific knockout mice
Characterization of novel endothelial-specific and smooth-muscle specific Poldip2 knockout mice
Targeted deletion of skNAC in mice resulted in early embryonic lethality with cardiac defects. In order to investigate the molecular mechanism of the cardiac defect, we designed the microarray comparing gene expression of the mutant E11.5 heart to wild type E11.5 heart. Keywords: genetic modificat...
ORGANISM(S): Mus musculus 
In the present study we have studied the mechanistic and functional aspects of NCoR1 function in mouse skeletal muscle. NCoR1 muscle-specific knockout mice exhibited an increased oxidative metabolism. Global gene expression analysis revealed a high overlap between the effects of NCoR1 deletion and p...
ORGANISM(S): Mus musculus 
Analysis of gastrocnemius muscle from chow-fed control and skeletal muscle specific Cpt1b knockout mice
Transcriptome analysis of Rev-erbs skeletal muscle specific knockout muscles and WT muscles
Expression profiling of type II skeletal muscle fibers from wild-type mice, myofiber-specific and satellite cell-specific Rrm2b knockout models
Exercise induces skeletal muscle adaptation, and the p38 mitogen-activated protein kinase signaling pathway is thought to play an important role in the adaptive processes. We have obtained new evidence that the gamma isoform of p38 is required for exercise-induced metabolic adaptation in skeletal mu...
ORGANISM(S): Mus musculus 
Next Generation Sequencing Facilitates Quantitative Analysis of Transcriptomes of Skeletal Muscle-Specific Akt Knockout Mice
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