Area of research
Molecular Biology · Physiology
Research interest
Research interests include Metabolism, Diabetes, and Cancer, Adipose Tissue and Metabolism, Pancreatic function and diabetes, and Muscle metabolism and nutrition.
Personalized phosphoproteomics of skeletal muscle insulin resistance and exercise links MINDY1 to insulin action
The mitochondrial mRNA-stabilizing protein SLIRP regulates skeletal muscle mitochondrial structure and respiration by exercise-recoverable mechanisms
ZAKβ is activated by cellular compression and mediates contraction‐induced MAP kinase signaling in skeletal muscle
Deep muscle-proteomic analysis of freeze-dried human muscle biopsies reveals fiber type-specific adaptations to exercise training
Personalized phosphoproteomics identifies functional signaling
Post-exercise recovery for the endurance athlete with type 1 diabetes: a consensus statement
pH-Gated Succinate Secretion Regulates Muscle Remodeling in Response to Exercise
Extracellular Vesicles Provide a Means for Tissue Crosstalk during Exercise
Exercise-induced molecular mechanisms promoting glycogen supercompensation in human skeletal muscle
AMPK in skeletal muscle function and metabolism
Multiplexed Temporal Quantification of the Exercise-regulated Plasma Peptidome
Enhanced Muscle Insulin Sensitivity After Contraction/Exercise Is Mediated by AMPK
Global Phosphoproteomic Analysis of Human Skeletal Muscle Reveals a Network of Exercise-Regulated Kinases and AMPK Substrates
Prior AICAR Stimulation Increases Insulin Sensitivity in Mouse Skeletal Muscle in an AMPK-Dependent Manner
AMP‐activated protein kinase regulates nicotinamide phosphoribosyl transferase expression in skeletal muscle
Impairments in Site-Specific AS160 Phosphorylation and Effects of Exercise Training