Difference between revisions of "Main Page"
From Muscle
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..experiment description .. | ..experiment description .. | ||
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=== Human === | === Human === | ||
..experiment description .. | ..experiment description .. | ||
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* [[Integrated model validation]] | * [[Integrated model validation]] | ||
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== Publications of the project == | == Publications of the project == | ||
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* [https://doi.org/10.3390/ijms22031208 Transcriptomic Signatures and Upstream Regulation in Human Skeletal Muscle Adapted to Disuse and Aerobic Exercise] | * [https://doi.org/10.3390/ijms22031208 Transcriptomic Signatures and Upstream Regulation in Human Skeletal Muscle Adapted to Disuse and Aerobic Exercise] | ||
* Genome-wide atlas of promoters expression reveals contribution of transcribed regulatory elements to genetic control of disuse-mediated atrophy, under review | * Genome-wide atlas of promoters expression reveals contribution of transcribed regulatory elements to genetic control of disuse-mediated atrophy, under review | ||
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Revision as of 12:54, 7 March 2021
Muscle project
...some intro/description ..
General scheme of the project
ExperimentsRat..experiment description .. ..reference to GEO... Human..experiment description .. ..reference to GEO... |
Bioinformatic analysisHuman data analysis
CAGE-seq analysis |
Mathematical modellingLinkage of metabolic pathways and gene expressionPathways and key proteinsModelsIntegrated modular models |
Publications of the project
- GTRD: a database on gene transcription regulation
- Modular Visual Model of Energy Metabolism in Human Skeletal Muscle
- A mathematical model linking signalling pathway and gene expression regulation in Human Skeletal Muscle
- Integrated Modular Model Linking Metabolism, Signaling Transduction and Gene Expression Regulation in Human Skeletal Muscle.
- Regulation of Proteins in Human Skeletal Muscle: The Role of Transcription
- Transcriptomic Signatures and Upstream Regulation in Human Skeletal Muscle Adapted to Disuse and Aerobic Exercise
- Genome-wide atlas of promoters expression reveals contribution of transcribed regulatory elements to genetic control of disuse-mediated atrophy, under review