| Literature DB >> 25156257 |
Jean-Benoît Arlet1, Jean-Antoine Ribeil2, Flavia Guillem3, Olivier Negre4, Adonis Hazoume5, Guillaume Marcion5, Yves Beuzard4, Michaël Dussiot6, Ivan Cruz Moura7, Samuel Demarest8, Isaure Chauvot de Beauchêne9, Zakia Belaid-Choucair3, Margaux Sevin5, Thiago Trovati Maciel7, Christian Auclair9, Philippe Leboulch10, Stany Chretien4, Luba Tchertanov9, Véronique Baudin-Creuza11, Renaud Seigneuric12, Michaela Fontenay13, Carmen Garrido14, Olivier Hermine15, Geneviève Courtois16.
Abstract
β-Thalassaemia major (β-TM) is an inherited haemoglobinopathy caused by a quantitative defect in the synthesis of β-globin chains of haemoglobin, leading to the accumulation of free α-globin chains that form toxic aggregates. Despite extensive knowledge of the molecular defects causing β-TM, little is known of the mechanisms responsible for the ineffective erythropoiesis observed in the condition, which is characterized by accelerated erythroid differentiation, maturation arrest and apoptosis at the polychromatophilic stage. We have previously demonstrated that normal human erythroid maturation requires a transient activation of caspase-3 at the later stages of maturation. Although erythroid transcription factor GATA-1, the master transcriptional factor of erythropoiesis, is a caspase-3 target, it is not cleaved during erythroid differentiation. We have shown that, in human erythroblasts, the chaperone heat shock protein70 (HSP70) is constitutively expressed and, at later stages of maturation, translocates into the nucleus and protects GATA-1 from caspase-3 cleavage. The primary role of this ubiquitous chaperone is to participate in the refolding of proteins denatured by cytoplasmic stress, thus preventing their aggregation. Here we show in vitro that during the maturation of human β-TM erythroblasts, HSP70 interacts directly with free α-globin chains. As a consequence, HSP70 is sequestrated in the cytoplasm and GATA-1 is no longer protected, resulting in end-stage maturation arrest and apoptosis. Transduction of a nuclear-targeted HSP70 mutant or a caspase-3-uncleavable GATA-1 mutant restores terminal maturation of β-TM erythroblasts, which may provide a rationale for new targeted therapies of β-TM.Entities:
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Year: 2014 PMID: 25156257 DOI: 10.1038/nature13614
Source DB: PubMed Journal: Nature ISSN: 0028-0836 Impact factor: 49.962