Publication | Open Access
Secretome Analysis of Skeletal Myogenesis Using SILAC and Shotgun Proteomics
14
Citations
172
References
2011
Year
Protein SecretionGeneticsCell ProliferationCytoskeletonMuscle DevelopmentSecretome AnalysisCellular PhysiologyEmbryologyProteomic TechnologyCell RegulationBone Morphogenic ProteinSkeletal MuscleProteomicsCell PhysiologyMechanobiologyNormal Muscle DevelopmentGene ExpressionFunctional GenomicsCell BiologyDevelopmental BiologyNatural SciencesSystems BiologyMedicineCell DevelopmentExtracellular Matrix
Myogenesis, the formation of skeletal muscle, is a multistep event that commences with myoblast proliferation, followed by cell-cycle arrest, and finally the formation of multinucleated myotubes via fusion of mononucleated myoblasts. Each step is orchestrated by well-documented intracellular factors, such as cytoplasmic signalling molecules and nuclear transcription factors. Regardless, the key step in getting a more comprehensive understanding of the regulation of myogenesis is to explore the extracellular factors that are capable of eliciting the downstream intracellular factors. This could further provide valuable insight into the acute cellular response to extrinsic cues in maintaining normal muscle development. In this paper, we survey the intracellular factors that respond to extracellular cues that are responsible for the cascades of events during myogenesis: myoblast proliferation, cell-cycle arrest of myoblasts, and differentiation of myoblasts into myotubes. This focus on extracellular perspective of muscle development illustrates our mass spectrometry-based proteomic approaches to identify differentially expressed secreted factors during skeletal myogenesis.
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