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Updated: Aug 22, 2025

Skeletal Muscle Gender Dimorphism from Proteomics
Published on: December 14, 2011
Shared and unique phosphoproteomics responses in skeletal muscle from exercise models and in hyperammonemic myotubes
Nicole Welch1,2, Shashi Shekhar Singh1, Ryan Musich1
1Department of Inflammation and Immunity, Cleveland Clinic, Cleveland, OH 44195, USA.
Abstract:
Skeletal muscle generation of ammonia, an endogenous cytotoxin, is increased during exercise. Perturbations in ammonia metabolism consistently occur in chronic diseases, and may blunt beneficial skeletal muscle molecular responses and protein homeostasis with exercise. Phosphorylation of skeletal muscle proteins mediates cellular signaling responses to hyperammonemia and exercise. Comparative bioinformatics and machine learning-based analyses of published and experimentally derived phosphoproteomics data identified differentially expressed phosphoproteins that were unique and shared between hyperammonemic murine myotubes and skeletal muscle from exercise models. Enriched processes identified in both hyperammonemic myotubes and muscle from exercise models with selected experimental validation included protein kinase A (PKA), calcium signaling, mitogen-activated protein kinase (MAPK) signaling, and protein homeostasis. Our approach of feature extraction from comparative untargeted "omics" data allows for selection of preclinical models that recapitulate specific human exercise responses and potentially optimize functional capacity and skeletal muscle protein homeostasis with exercise in chronic diseases.
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