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Metformin directly targets the H3K27me3 demethylase KDM6A/UTX
by
Llorach‐Pares, Laura
, Neuzil, Jiri
, Viollet, Benoit
, Menendez, Javier A.
, Martin‐Castillo, Begoña
, Cabré, Noemí
, Joven, Jorge
, Nonell‐Canals, Alfons
, Werner, Lukas
, Sanchez‐Martinez, Melchor
, Cuyàs, Elisabet
, Fernández‐Arroyo, Salvador
, Luciano‐Mateo, Fedra
, Verdura, Sara
, Stursa, Jan
in
Aging
/ Amino acids
/ Animals
/ Binding sites
/ Biocatalysis
/ Breast cancer
/ cancer
/ chemoinformatics
/ Chromatin
/ computational screening
/ Demethylation
/ Diabetes therapy
/ Dose-Response Relationship, Drug
/ Drinking water
/ Electron transport chain
/ Endocrinology and metabolism
/ Enzyme Inhibitors
/ Enzyme Inhibitors - chemistry
/ Enzyme Inhibitors - pharmacology
/ Epigenetic inheritance
/ Female
/ Health aspects
/ Histone Demethylases
/ Histone Demethylases - antagonists & inhibitors
/ Histone Demethylases - metabolism
/ Human health and pathology
/ Humans
/ Life Sciences
/ Ligands
/ Metformin
/ Metformin - chemistry
/ Metformin - pharmacology
/ Mice
/ Mice, Knockout
/ Mitochondria
/ Models, Molecular
/ Molecular Structure
/ NADH-ubiquinone oxidoreductase
/ Neoplasms, Experimental
/ Neoplasms, Experimental - drug therapy
/ Neoplasms, Experimental - metabolism
/ Nuclear Proteins
/ Nuclear Proteins - antagonists & inhibitors
/ Nuclear Proteins - metabolism
/ Original
/ Protein binding
/ Receptor density
/ Therapeutic applications
/ Type 2 diabetes
/ Xenografts
2018
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Metformin directly targets the H3K27me3 demethylase KDM6A/UTX
by
Llorach‐Pares, Laura
, Neuzil, Jiri
, Viollet, Benoit
, Menendez, Javier A.
, Martin‐Castillo, Begoña
, Cabré, Noemí
, Joven, Jorge
, Nonell‐Canals, Alfons
, Werner, Lukas
, Sanchez‐Martinez, Melchor
, Cuyàs, Elisabet
, Fernández‐Arroyo, Salvador
, Luciano‐Mateo, Fedra
, Verdura, Sara
, Stursa, Jan
in
Aging
/ Amino acids
/ Animals
/ Binding sites
/ Biocatalysis
/ Breast cancer
/ cancer
/ chemoinformatics
/ Chromatin
/ computational screening
/ Demethylation
/ Diabetes therapy
/ Dose-Response Relationship, Drug
/ Drinking water
/ Electron transport chain
/ Endocrinology and metabolism
/ Enzyme Inhibitors
/ Enzyme Inhibitors - chemistry
/ Enzyme Inhibitors - pharmacology
/ Epigenetic inheritance
/ Female
/ Health aspects
/ Histone Demethylases
/ Histone Demethylases - antagonists & inhibitors
/ Histone Demethylases - metabolism
/ Human health and pathology
/ Humans
/ Life Sciences
/ Ligands
/ Metformin
/ Metformin - chemistry
/ Metformin - pharmacology
/ Mice
/ Mice, Knockout
/ Mitochondria
/ Models, Molecular
/ Molecular Structure
/ NADH-ubiquinone oxidoreductase
/ Neoplasms, Experimental
/ Neoplasms, Experimental - drug therapy
/ Neoplasms, Experimental - metabolism
/ Nuclear Proteins
/ Nuclear Proteins - antagonists & inhibitors
/ Nuclear Proteins - metabolism
/ Original
/ Protein binding
/ Receptor density
/ Therapeutic applications
/ Type 2 diabetes
/ Xenografts
2018
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Metformin directly targets the H3K27me3 demethylase KDM6A/UTX
by
Llorach‐Pares, Laura
, Neuzil, Jiri
, Viollet, Benoit
, Menendez, Javier A.
, Martin‐Castillo, Begoña
, Cabré, Noemí
, Joven, Jorge
, Nonell‐Canals, Alfons
, Werner, Lukas
, Sanchez‐Martinez, Melchor
, Cuyàs, Elisabet
, Fernández‐Arroyo, Salvador
, Luciano‐Mateo, Fedra
, Verdura, Sara
, Stursa, Jan
in
Aging
/ Amino acids
/ Animals
/ Binding sites
/ Biocatalysis
/ Breast cancer
/ cancer
/ chemoinformatics
/ Chromatin
/ computational screening
/ Demethylation
/ Diabetes therapy
/ Dose-Response Relationship, Drug
/ Drinking water
/ Electron transport chain
/ Endocrinology and metabolism
/ Enzyme Inhibitors
/ Enzyme Inhibitors - chemistry
/ Enzyme Inhibitors - pharmacology
/ Epigenetic inheritance
/ Female
/ Health aspects
/ Histone Demethylases
/ Histone Demethylases - antagonists & inhibitors
/ Histone Demethylases - metabolism
/ Human health and pathology
/ Humans
/ Life Sciences
/ Ligands
/ Metformin
/ Metformin - chemistry
/ Metformin - pharmacology
/ Mice
/ Mice, Knockout
/ Mitochondria
/ Models, Molecular
/ Molecular Structure
/ NADH-ubiquinone oxidoreductase
/ Neoplasms, Experimental
/ Neoplasms, Experimental - drug therapy
/ Neoplasms, Experimental - metabolism
/ Nuclear Proteins
/ Nuclear Proteins - antagonists & inhibitors
/ Nuclear Proteins - metabolism
/ Original
/ Protein binding
/ Receptor density
/ Therapeutic applications
/ Type 2 diabetes
/ Xenografts
2018
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Metformin directly targets the H3K27me3 demethylase KDM6A/UTX
Journal Article
Metformin directly targets the H3K27me3 demethylase KDM6A/UTX
2018
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Overview
Summary Metformin, the first drug chosen to be tested in a clinical trial aimed to target the biology of aging per se, has been clinically exploited for decades in the absence of a complete understanding of its therapeutic targets or chemical determinants. We here outline a systematic chemoinformatics approach to computationally predict biomolecular targets of metformin. Using several structure‐ and ligand‐based software tools and reference databases containing 1,300,000 chemical compounds and more than 9,000 binding sites protein cavities, we identified 41 putative metformin targets including several epigenetic modifiers such as the member of the H3K27me3‐specific demethylase subfamily, KDM6A/UTX. AlphaScreen and AlphaLISA assays confirmed the ability of metformin to inhibit the demethylation activity of purified KDM6A/UTX enzyme. Structural studies revealed that metformin might occupy the same set of residues involved in H3K27me3 binding and demethylation within the catalytic pocket of KDM6A/UTX. Millimolar metformin augmented global levels of H3K27me3 in cultured cells, including reversion of global loss of H3K27me3 occurring in premature aging syndromes, irrespective of mitochondrial complex I or AMPK. Pharmacological doses of metformin in drinking water or intraperitoneal injection significantly elevated the global levels of H3K27me3 in the hepatic tissue of low‐density lipoprotein receptor‐deficient mice and in the tumor tissues of highly aggressive breast cancer xenograft‐bearing mice. Moreover, nondiabetic breast cancer patients receiving oral metformin in addition to standard therapy presented an elevated level of circulating H3K27me3. Our biocomputational approach coupled to experimental validation reveals that metformin might directly regulate the biological machinery of aging by targeting core chromatin modifiers of the epigenome.
Publisher
John Wiley & Sons, Inc,Wiley Open Access,John Wiley and Sons Inc
Subject
/ Animals
/ cancer
/ Dose-Response Relationship, Drug
/ Endocrinology and metabolism
/ Enzyme Inhibitors - chemistry
/ Enzyme Inhibitors - pharmacology
/ Female
/ Histone Demethylases - antagonists & inhibitors
/ Histone Demethylases - metabolism
/ Humans
/ Ligands
/ Mice
/ NADH-ubiquinone oxidoreductase
/ Neoplasms, Experimental - drug therapy
/ Neoplasms, Experimental - metabolism
/ Nuclear Proteins - antagonists & inhibitors
/ Nuclear Proteins - metabolism
/ Original
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