The formation of skeletal muscles is associated with drastic changes in protein requirements known to be safeguarded by tight control of gene transcription and mRNA processing. The contribution of regulation of mRNA translation during myogenesis has not been studied so far. We monitored translation during myogenic differentiation of C2C12 myoblasts, using a simplified protocol for ribosome footprint profiling. Comparison of ribosome footprints to total RNA showed that gene expression is mostly regulated at the transcriptional level. However, a subset of transcripts, enriched for mRNAs encoding for ribosomal proteins, was regulated at the level of translation. Enrichment was also found for specific pathways known to regulate muscle biology. ...
Skeletal muscle mass is a result of the balance between protein breakdown and protein synthesis. It ...
Skeletal muscle mass is a result of the balance between protein breakdown and protein synthesis. It ...
BACKGROUND: The expression of myogenic regulatory factors (MRFs) consisting of MyoD, Myf5, myogenin ...
Contains fulltext : 154574.pdf (publisher's version ) (Open Access)The formation o...
Gene expression in a tissue-specific context depends on the combined efforts of epigenetic, transcri...
Gene expression in a tissue-specific context depends on the combined efforts of epigenetic, transcri...
Muscle formation is a coordinated process driven by extensive gene expression changes where single c...
The ribosome is a supramolecular ribonucleoprotein complex that functions at the heart of the transl...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
<div><p>Recent advances in next-generation sequencing approaches have revolutionized our understandi...
Background: a high-sensitivity DNA microarray platform requiring nanograms of RNA input facilitates ...
Emerging evidence has demonstrated that miRNA sequences can regulate skeletal myogenesis by controll...
Emerging evidence has demonstrated that miRNA sequences can regulate skeletal myogenesis by controll...
INTRODUCTION: The differentiation of myoblasts into skeletal muscle is accompanied by drastic change...
Background: miRNA profiling performed in myogenic cells and biopsies from skeletal muscles has previ...
Skeletal muscle mass is a result of the balance between protein breakdown and protein synthesis. It ...
Skeletal muscle mass is a result of the balance between protein breakdown and protein synthesis. It ...
BACKGROUND: The expression of myogenic regulatory factors (MRFs) consisting of MyoD, Myf5, myogenin ...
Contains fulltext : 154574.pdf (publisher's version ) (Open Access)The formation o...
Gene expression in a tissue-specific context depends on the combined efforts of epigenetic, transcri...
Gene expression in a tissue-specific context depends on the combined efforts of epigenetic, transcri...
Muscle formation is a coordinated process driven by extensive gene expression changes where single c...
The ribosome is a supramolecular ribonucleoprotein complex that functions at the heart of the transl...
Ribosomes carry out protein synthesis from mRNA templates by a highly regulated process called trans...
<div><p>Recent advances in next-generation sequencing approaches have revolutionized our understandi...
Background: a high-sensitivity DNA microarray platform requiring nanograms of RNA input facilitates ...
Emerging evidence has demonstrated that miRNA sequences can regulate skeletal myogenesis by controll...
Emerging evidence has demonstrated that miRNA sequences can regulate skeletal myogenesis by controll...
INTRODUCTION: The differentiation of myoblasts into skeletal muscle is accompanied by drastic change...
Background: miRNA profiling performed in myogenic cells and biopsies from skeletal muscles has previ...
Skeletal muscle mass is a result of the balance between protein breakdown and protein synthesis. It ...
Skeletal muscle mass is a result of the balance between protein breakdown and protein synthesis. It ...
BACKGROUND: The expression of myogenic regulatory factors (MRFs) consisting of MyoD, Myf5, myogenin ...