Research map: Feeding the epigenome: EZH2 as a metabolic integrator of cell fate in development and cancer
Back to the article
Papers in this map
- Metabolic Reprogramming: A Cancer Hallmark Even Warburg Did Not Anticipate · Patrick S. Ward · 2012 · 3329 citations · Cited by this paper
- Serine metabolism in the central nervous system: advances and challenges on a conditionally essential amino acid · 2025 · Related
- Oncometabolite 2-Hydroxyglutarate Is a Competitive Inhibitor of α-Ketoglutarate-Dependent Dioxygenases · Wei Xu · 2011 · 2929 citations · Cited by this paper
- The multifunctionality of the caspase family of proteases: A new perspective beyond cell death · 2025 · Related
- Metabolic reprogramming and cancer progression · Brandon Faubert · 2020 · 2814 citations · Cited by this paper
- The potential use of anti-codon engineered tRNAs (ACE-tRNAs) to treat nonsense variants causing inherited retinal diseases · 2025 · Related
- ATP-Citrate Lyase Links Cellular Metabolism to Histone Acetylation · Kathryn E. Wellen · 2009 · 2334 citations · Cited by this paper
- Insulin resistance: The central node of convergence between unfolded protein response, diabetes, and cancer · 2026 · Related
- Histone methylation: a dynamic mark in health, disease and inheritance · Eric Lieberman Greer · 2012 · 2237 citations · Cited by this paper
- RNA editing of pathogenic variants causing inherited retinal diseases using endogenous ADAR-current and future perspectives · 2026 · Related
- The Polycomb group protein EZH2 directly controls DNA methylation · Emmanuelle A. Viré · 2005 · 2228 citations · Cited by this paper
- Unveiling the P2X7 receptor: Exploring its mechanisms, pathogenic role in ocular diseases, and emerging therapeutic potential · 2025 · Related
- IDH mutation impairs histone demethylation and results in a block to cell differentiation · Chao Lü · 2012 · 2016 citations · Cited by this paper
- Pharmacological reprogramming of plitidepsin as a SARS-CoV-2 inhibitor · 2025 · Related
- NAD+ and sirtuins in aging and disease · Shin‐ichiro Imai · 2014 · 1502 citations · Cited by this paper
- Molecular mechanism involved in sarcopenia and frailty, diagnosis and therapy · 2025 · Related
- Targeting EZH2 in cancer · Kimberly Hyunjung Kim · 2016 · 1483 citations · Cited by this paper
- Research advancements on sumoylation in gastrointestinal cancers · 2025 · Related
- The hallmarks of cancer metabolism: Still emerging · Natalya N. Pavlova · 2022 · 1471 citations · Cited by this paper
- The crosstalk of neutrophil extracellular trap-inflammasome and their roles in disease progression · 2025 · Related
- Q's next: the diverse functions of glutamine in metabolism, cell biology and cancer · Ralph J. DeBerardinis · 2009 · 1400 citations · Cited by this paper
- NAD + in aging, metabolism, and neurodegeneration · Eric M. Verdin · 2015 · 1337 citations · Cited by this paper
- Writing, erasing and reading histone lysine methylations · Kwangbeom Hyun · 2017 · 1307 citations · Cited by this paper
- The NAD+ Precursor Nicotinamide Riboside Enhances Oxidative Metabolism and Protects against High-Fat Diet-Induced Obesity · Carles Cantó · 2012 · 1262 citations · Cited by this paper
- Transient high glucose causes persistent epigenetic changes and altered gene expression during subsequent normoglycemia · Assam El‐Osta · 2008 · 1120 citations · Cited by this paper
- EZH1 Mediates Methylation on Histone H3 Lysine 27 and Complements EZH2 in Maintaining Stem Cell Identity and Executing Pluripotency · Xiaohua Shen · 2008 · 1038 citations · Cited by this paper
- The Polycomb-Group GeneEzh2 Is Required for Early Mouse Development · Dónal O’Carroll · 2001 · 945 citations · Cited by this paper
- Influence of Metabolism on Epigenetics and Disease · William G. Kaelin · 2013 · 926 citations · Cited by this paper
- The Secret Life of NAD+: An Old Metabolite Controlling New Metabolic Signaling Pathways · Riekelt H. Houtkooper · 2010 · 906 citations · Cited by this paper
- Ezh1 and Ezh2 Maintain Repressive Chromatin through Different Mechanisms · Raphaël Margueron · 2008 · 903 citations · Cited by this paper
- Metabolic reprogramming and epigenetic modifications on the path to cancer · Linchong Sun · 2021 · 810 citations · Cited by this paper
- Metabolic Regulation of Epigenetics · Chao Lü · 2012 · 705 citations · Cited by this paper
- Chromatin-modifying enzymes as modulators of reprogramming · Tamer T. Önder · 2012 · 650 citations · Cited by this paper
- Ezh2 Orchestrates Gene Expression for the Stepwise Differentiation of Tissue-Specific Stem Cells · Elena Ezhkova · 2009 · 625 citations · Cited by this paper
- The Polycomb Ezh2 methyltransferase regulates muscle gene expression and skeletal muscle differentiation · Giuseppina Caretti · 2004 · 613 citations · Cited by this paper
- Ezh2 controls B cell development through histone H3 methylation and Igh rearrangement · I-hsin Su · 2002 · 611 citations · Cited by this paper
- Fumarate is an epigenetic modifier that elicits epithelial-to-mesenchymal transition · Marco Sciacovelli · 2016 · 605 citations · Cited by this paper
- Aberrations of EZH2 in Cancer · Andrew Chase · 2011 · 560 citations · Cited by this paper
- Akt-Mediated Phosphorylation of EZH2 Suppresses Methylation of Lysine 27 in Histone H3 · Tai‐Lung Cha · 2005 · 556 citations · Cited by this paper
Source: OpenAlex (CC0)