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Fibrosis is a pathologic condition of abnormal accumulation of collagen fibrils. Collagen is a major extracellular matrix (ECM) protein synthesized and secreted by myofibroblasts, composing mainly (Gly-X-Y)n triplet repeats with >30% Gly residue. During fibrosis progression, myofibroblasts must upregulate glycine metabolism to meet the high demands of amino acids for collagen synthesis. Expression of PKM2 in myofibroblasts was analyzed in cultured fibroblasts and fibrosis disease tissues. Functional roles of PKM2 and PKM2 activator in biosynthesis of serine → glycine and production of collagen from glycolysis intermediates were assayed in cultured activated LX-2 and human primary lung fibroblast cells. Mouse models of Liver, lung, and pancreas fibrosis were employed to analyze treatment effects of PKM2 activator in organ tissue fibrosis. We report here that myofibroblast differentiation upregulates pyruvate kinase M2 (PKM2) and promotes dimerization of PKM2. Dimer PKM2 slows the flow rate of glycolysis and channels glycolytic intermediates to glycine synthesis, which facilitates collagen synthesis and secretion in myofibroblasts. Our results show that PKM2 activator that converts PKM2 dimer to tetramer, inhibits fibrosis progression in mouse models of liver, lung, and pancreatic fibrosis. Furthermore, metabolism alteration by dimer PKM2 increases NADPH production, which consequently protects myofibroblasts from apoptosis. Our study uncovers a novel role of PKM2 in tissue/organ fibrosis, suggesting a possible strategy for treatment of fibrotic diseases using PKM2 activator.
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http://dx.doi.org/10.7150/thno.60385 | DOI Listing |
Cisplatin resistance significantly limits the efficacy of chemotherapy in non-small cell lung cancer, necessitating the development of new strategies to overcome this barrier. This in vitro study aimed to elucidate the mechanism by which β-Ele reverses cisplatin resistance in lung adenocarcinoma cells via the LINC00511-mediated glycolysis and Wnt/β-catenin signaling pathways. The cisplatin-resistant human lung adenocarcinoma cell line (A549/DDP), with either LINC00511 overexpression or knockdown, was established through plasmid transfection.
View Article and Find Full Text PDFAnticancer Agents Med Chem
September 2025
Department of Pharmaceutical Chemistry, Maharana Pratap College of Pharmacy, Kanpur-209217, Uttar Pradesh, India.
PKM2 has emerged as a critical biomarker with the potential to enhance both diagnostic accuracy and therapeutic strategies in ovarian cancer. Due to its high fatality rate and difficulty identifying early signs, ovarian cancer remains a major global health concern. Biomarkers, particularly PKM2, provide targeted therapeutic methods and early detection.
View Article and Find Full Text PDFbioRxiv
August 2025
Department of Chemistry, University of Alberta, Edmonton, AB T6G 2G2, Canada.
Genetically-encoded libraries of peptide-derived macrocycles containing electrophile 'warheads' (cGELs) can be used to identify potent and selective covalent ligands for protein targets. Such cGELs are synthesized either by incorporation of unnatural amino acids that display mild electrophiles on their side chains or by chemical post-translational modification (cPTM) of mRNA or phage-displayed peptide libraries. Here we investigate fundamental barriers to the synthesis of cGELs.
View Article and Find Full Text PDFCommun Biol
August 2025
College of Animal Science and Technology, Qingdao Agricultural University, Qingdao, China.
Succinylation is a recently identified post-translational modification (PTM) that modulates enzyme activity and metabolism. However, how it regulates metabolic reprogramming in sperm remains unclear. In this study, we show that succinylation of pyruvate kinase M2 (PKM2) promotes oxidative phosphorylation (OXPHOS) and linear motility in boar sperm.
View Article and Find Full Text PDFInt J Mol Sci
August 2025
Department of Neurobiology, School of Basic Medical Sciences, Capital Medical University, Beijing 100069, China.
Lactate is not only the end product of glycolysis but also plays a key role in epigenetic regulation. Recently, lactate-derived histone lactylation has been identified as a novel epigenetic modification that can directly influence gene transcription. Histone lactylation has been associated with various pathological conditions and shows significant therapeutic potential.
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