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Hyperacetylated histone H4 is a source of carbon contributing to lipid synthesis.
Charidemou, Evelina; Noberini, Roberta; Ghirardi, Chiara; Georgiou, Polymnia; Marcou, Panayiota; Theophanous, Andria; Strati, Katerina; Keun, Hector; Behrends, Volker; Bonaldi, Tiziana; Kirmizis, Antonis.
Afiliação
  • Charidemou E; Department of Biological Sciences, University of Cyprus, 2109, Nicosia, Cyprus.
  • Noberini R; Department of Experimental Oncology, IEO, European Institute of Oncology IRCCS, 20139, Milan, Italy.
  • Ghirardi C; Department of Oncology and Haematology-Oncology, University of Milano, Via Festa del Perdono 7, 20122, Milano, Italy.
  • Georgiou P; Department of Experimental Oncology, IEO, European Institute of Oncology IRCCS, 20139, Milan, Italy.
  • Marcou P; Department of Oncology and Haematology-Oncology, University of Milano, Via Festa del Perdono 7, 20122, Milano, Italy.
  • Theophanous A; Department of Biological Sciences, University of Cyprus, 2109, Nicosia, Cyprus.
  • Strati K; Department of Biological Sciences, University of Cyprus, 2109, Nicosia, Cyprus.
  • Keun H; Department of Biological Sciences, University of Cyprus, 2109, Nicosia, Cyprus.
  • Behrends V; Department of Biological Sciences, University of Cyprus, 2109, Nicosia, Cyprus.
  • Bonaldi T; Cancer Metabolism & Systems Toxicology Group, Division of Cancer, Department of Surgery and Cancer, Imperial College London, London, UK.
  • Kirmizis A; School of Life and Health Sciences, Whitelands College, University of Roehampton, London, UK.
EMBO J ; 43(7): 1187-1213, 2024 Apr.
Article em En | MEDLINE | ID: mdl-38383863
ABSTRACT
Histone modifications commonly integrate environmental cues with cellular metabolic outputs by affecting gene expression. However, chromatin modifications such as acetylation do not always correlate with transcription, pointing towards an alternative role of histone modifications in cellular metabolism. Using an approach that integrates mass spectrometry-based histone modification mapping and metabolomics with stable isotope tracers, we demonstrate that elevated lipids in acetyltransferase-depleted hepatocytes result from carbon atoms derived from deacetylation of hyperacetylated histone H4 flowing towards fatty acids. Consistently, enhanced lipid synthesis in acetyltransferase-depleted hepatocytes is dependent on histone deacetylases and acetyl-CoA synthetase ACSS2, but not on the substrate specificity of the acetyltransferases. Furthermore, we show that during diet-induced lipid synthesis the levels of hyperacetylated histone H4 decrease in hepatocytes and in mouse liver. In addition, overexpression of acetyltransferases can reverse diet-induced lipogenesis by blocking lipid droplet accumulation and maintaining the levels of hyperacetylated histone H4. Overall, these findings highlight hyperacetylated histones as a metabolite reservoir that can directly contribute carbon to lipid synthesis, constituting a novel function of chromatin in cellular metabolism.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Carbono / Histonas Limite: Animals Idioma: En Revista: EMBO J Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Chipre

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Carbono / Histonas Limite: Animals Idioma: En Revista: EMBO J Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Chipre