ArticleFASEB journal : official publication of the Federation of American Societies for Experimental Biology2024
Muscle-specific pyruvate kinase isoforms, PKM1 and PKM2, regulate mammalian SWI/SNF proteins and histone 3 phosphorylation during myoblast differentiation.
Article in FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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8 citing papers in PubMed.
- The SWI/SNF complex in tumor metabolism: Mechanisms and therapeutic implications.The Journal of biological chemistry · 2026Review
- PTBP1 inhibition reprograms myogenesis to rescue impaired muscle regeneration in mdx mice through correcting E2A splicing.Nature communications · 2026Article
- The PBAF chromatin remodeling complex contributes to metal homeostasis through MTF1 regulation.Metallomics : integrated biometal science · 2026Article
- Unveiling the inhibitory effects of tannic acid and doxorubicin combination on pyruvate kinase M2 in breast cancer cells.Frontiers in pharmacology · 2026Article
- Insights into WDR5: unveiling its functions, regulation, and impact on skeletal muscle.Epigenetics · 2025Review
- Reciprocal control of metabolic and chromatin regulators improves rice tolerance to heat.Nature communications · 2025Article
- Pyruvate Kinase M2 Links Metabolism and Epigenetics: A New Target for Liver Disease Treatment.Biomolecules · 2025Review
- Cysteine Rich Intestinal Protein 2 is a copper-responsive regulator of skeletal muscle differentiation and metal homeostasis.PLoS genetics · 2024Article
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Abstract
Pyruvate kinase is a glycolytic enzyme that converts phosphoenolpyruvate and ADP into pyruvate and ATP. There are two genes that encode pyruvate kinase in vertebrates; Pkm and Pkl encode muscle- and liver/erythrocyte-specific forms, respectively. Each gene encodes two isoenzymes due to alternative splicing. Both muscle-specific enzymes, PKM1 and PKM2, function in glycolysis, but PKM2 also has been implicated in gene regulation due to its ability to phosphorylate histone 3 threonine 11 (H3T11) in cancer cells. Here, we examined the roles of PKM1 and PKM2 during myoblast differentiation. RNA-seq analysis revealed that PKM2 promotes the expression of Dpf2/Baf45d and Baf250a/Arid1A. DPF2 and BAF250a are subunits that identify a specific sub-family of the mammalian SWI/SNF (mSWI/SNF) of chromatin remodeling enzymes that is required for the activation of myogenic gene expression during differentiation. PKM2 also mediated the incorporation of DPF2 and BAF250a into the regulatory sequences controlling myogenic gene expression. PKM1 did not affect expression but was required for nuclear localization of DPF2. Additionally, PKM2 was required not only for the incorporation of phosphorylated H3T11 in myogenic promoters but also for the incorporation of phosphorylated H3T6 and H3T45 at myogenic promoters via regulation of AKT and protein kinase C isoforms that phosphorylate those amino acids. Our results identify multiple unique roles for PKM2 and a novel function for PKM1 in gene expression and chromatin regulation during myoblast differentiation.
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