Kinases and Phosphatases · 2023 · 25 citations · 101 references
Type IiCellular PhysiologyMolecular PharmacologySignaling PathwayReceptor Tyrosine KinaseAutophagyCellular Regulatory MechanismCancer MetabolismCell SignalingMolecular OncologyMolecular SignalingMolecular PhysiologyMolecular PathwayPathway AnalysisPharmacologyCell BiologyProtein PhosphorylationMolecular MedicineSignal TransductionNext-generation SequencingPhysiologyIntricate Signaling NetworkCellular BiochemistrySystems BiologyMedicineHuman PathologiesDrug Discovery
Adenosine Monophosphate-Activated Protein Kinase (AMPK) is the major conserved regulator of cellular metabolism in eukaryotic cells, from yeast to mammals. Given its pivotal role, it is not surprising that alterations in its function may contribute to the pathogenesis of numerous human diseases. Indeed, AMPK has become a promising therapeutic target for several pathologies. In this context, significant efforts have been dedicated to discovering new pharmacological agents capable of activating AMPK based on next-generation sequencing (NGS) technology and personalized medicine. Thanks to computational methodologies and high-throughput screening, the identification of small molecules and compounds with the potential to directly activate AMPK or modulate its intricate signaling network has become viable. However, the most widely used drug to activate AMPK in human patients is still metformin, which has shown promising results in the treatment of various diseases, such as type II diabetes, atherosclerosis, Alzheimer’s disease, Huntington’s disease, and several types of cancer. In this review, we present a comprehensive analysis of the involvement of AMPK in human pathology, emphasizing its significant potential as a therapeutic target.
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Pouya Saeedi, Inga Petersohn, Belma Malanda et al. · Diabetes Research and Clinical Practice · 2019 · 10K citations
AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1
Joungmok Kim, Mondira Kundu, Benoı̂t Viollet et al. · Nature Cell Biology · 2011 · 6.8K citations · Full text
AMPK Phosphorylation of Raptor Mediates a Metabolic Checkpoint
Dana M. Gwinn, David B. Shackelford, Daniel F. Egan et al. · Molecular Cell · 2008 · 3.7K citations · Full text
Signal Transduction, Signaling Pathway, Metabolic Checkpoint +5