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The molecular mechanisms underlying the sex differences in human muscle morphology and function remain to be elucidated. The purpose of the study was to detect the sex differences in the skeletal muscle transcriptome in both the resting state and following anabolic stimuli, resistance exericse.
ORGANISM(S): Homo sapiens 
2010-12-06 | GSE24235 | GEO
Reactive oxygen species (ROS) contribute to health and disease. CaMKII is a widely expressed enzyme whose activation by oxidation of regulatory domain methionines (ox-CaMKII) contributes to cardiovascular disease, asthma, and cancer. Here we integrate comparative genomic and experimental data to sho...
ORGANISM(S): Mus musculus 
2021-05-01 | GSE132520 | GEO
To characterize phosphorylation-based signaling events across different exercise modalities we subjected eight healthy young men (age, 26.3±1.3 years; BMI, 23.5±0.7 kg/m2; maximal oxygen uptake (VO2 max), 42.6±1.5 ml/kg/min) that did not perform regular physical activity apart from local bicycling t...
ORGANISM(S): Homo sapiens (Human) 
2022-07-18 | PXD031049 | Pride
Four healthy male volunteers (age: 24 - 27; BMI: 24.2 - 25.9 kg/m2) underwent a single bout of high-intensity bicycle exercise reaching a VO2 max approximately 95% with blood samples and muscle biopsies taken immediately pre- and post-exercise. Subjects reached 95% VO2 max in approximately 9 to 12 m...
ORGANISM(S): Homo sapiens (Human) 
2016-06-29 | PXD001543 | Pride
Skeletal muscle gene expression in response to resistance exercise: sex specific regulation
RNA sequencing of poly(A+) transcriptome of quadriceps muscles from wildtype and CaMK2gVV/CaMK2gVV mice under sedentary and post-acute exercise conditions
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