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Transcriptional and epigenetic basis for restoration of G6PD enzymatic activity in human G6PD-deficient cells.
Makarona, Kalliopi; Caputo, Valentina S; Costa, Joana R; Liu, Binbin; O'Connor, David; Iskander, Deena; Roper, David; Robertson, Lynn; Bhatnagar, Neha; Terpos, Evangelos; Georgiou, Elisabeth; Papaioannou, Maria; Layton, D Mark; Luzzatto, Lucio; Roberts, Irene; Karadimitris, Anastasios.
Afiliação
  • Makarona K; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Caputo VS; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Costa JR; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Liu B; Department of Paediatrics, Children's Hospital and Molecular Haematology Unit, Weatherall Institute of Molecular Medicine, Oxford University and John Radcliffe Hospital, Headington, Oxford, United Kingdom;
  • O'Connor D; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Iskander D; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Roper D; Blood Sciences Service, Hammersmith Hospital, Imperial College Healthcare National Health Service Trust, London, United Kingdom;
  • Robertson L; Blood Sciences Service, Hammersmith Hospital, Imperial College Healthcare National Health Service Trust, London, United Kingdom;
  • Bhatnagar N; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Terpos E; Department of Clinical Therapeutics, University of Athens School of Medicine, Athens, Greece;
  • Georgiou E; Department of Biological Chemistry, School of Medicine, Aristoteleion University of Thessaloniki, Thessaloniki, Greece;
  • Papaioannou M; American Hellenic Educational Progressive Association Hospital, Aristoteleion University Medical School, Thessaloniki, Greece; and.
  • Layton DM; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
  • Luzzatto L; Istituto Toscano Tumori, Firenze, Italy.
  • Roberts I; Department of Paediatrics, Children's Hospital and Molecular Haematology Unit, Weatherall Institute of Molecular Medicine, Oxford University and John Radcliffe Hospital, Headington, Oxford, United Kingdom;
  • Karadimitris A; Centre for Haematology, Department of Medicine, Hammersmith Hospital, Imperial College London, London, United Kingdom;
Blood ; 124(1): 134-41, 2014 Jul 03.
Article em En | MEDLINE | ID: mdl-24805191
ABSTRACT
HDAC inhibitors (HDACi) increase transcription of some genes through histone hyperacetylation. To test the hypothesis that HDACi-mediated enhanced transcription might be of therapeutic value for inherited enzyme deficiency disorders, we focused on the glycolytic and pentose phosphate pathways (GPPPs). We show that among the 16 genes of the GPPPs, HDACi selectively enhance transcription of glucose 6-phosphate dehydrogenase (G6PD). This requires enhanced recruitment of the generic transcription factor Sp1, with commensurate recruitment of histone acetyltransferases and deacetylases, increased histone acetylation, and polymerase II recruitment to G6PD. These G6PD-selective transcriptional and epigenetic events result in increased G6PD transcription and ultimately restored enzymatic activity in B cells and erythroid precursor cells from patients with G6PD deficiency, a disorder associated with acute or chronic hemolytic anemia. Therefore, restoration of enzymatic activity in G6PD-deficient nucleated cells is feasible through modulation of G6PD transcription. Our findings also suggest that clinical consequences of pathogenic missense mutations in proteins with enzymatic function can be overcome in some cases by enhancement of the transcriptional output of the affected gene.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transcrição Gênica / Epigênese Genética / Inibidores de Histona Desacetilases / Glucosefosfato Desidrogenase / Deficiência de Glucosefosfato Desidrogenase Limite: Humans Idioma: En Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transcrição Gênica / Epigênese Genética / Inibidores de Histona Desacetilases / Glucosefosfato Desidrogenase / Deficiência de Glucosefosfato Desidrogenase Limite: Humans Idioma: En Ano de publicação: 2014 Tipo de documento: Article