| Literature DB >> 31292266 |
Sabrina Bondu1,2,3,4, Anne-Sophie Alary1,2,3,4,5, Carine Lefèvre1,2,3,4,6, Alexandre Houy7, Grace Jung8, Thibaud Lefebvre1,6,9, David Rombaut1,2,3,4, Ismael Boussaid1,2,3,4, Abderrahmane Bousta1,2,3,4, François Guillonneau1,2,3,4,10, Prunelle Perrier11, Samar Alsafadi12, Michel Wassef13, Raphaël Margueron13, Alice Rousseau1,2,3,4, Nathalie Droin14, Nicolas Cagnard1,15, Sophie Kaltenbach1,16, Susann Winter17, Anne-Sophie Kubasch18, Didier Bouscary1,2,3,4,19, Valeria Santini20, Andrea Toma21, Mathilde Hunault22, Aspasia Stamatoullas23, Emmanuel Gyan24, Thomas Cluzeau25, Uwe Platzbecker18, Lionel Adès1,26, Hervé Puy1,6,9, Marc-Henri Stern27, Zoubida Karim1,6,9, Patrick Mayeux1,2,3,4,6,10, Elizabeta Nemeth8, Sophie Park28, Tomas Ganz8, Léon Kautz11, Olivier Kosmider29,2,3,4,5,6, Michaëla Fontenay29,2,3,4,5,6.
Abstract
Myelodysplastic syndromes (MDS) with ring sideroblasts are hematopoietic stem cell disorders with erythroid dysplasia and mutations in the SF3B1 splicing factor gene. Patients with MDS with SF3B1 mutations often accumulate excessive tissue iron, even in the absence of transfusions, but the mechanisms that are responsible for their parenchymal iron overload are unknown. Body iron content, tissue distribution, and the supply of iron for erythropoiesis are controlled by the hormone hepcidin, which is regulated by erythroblasts through secretion of the erythroid hormone erythroferrone (ERFE). Here, we identified an alternative ERFE transcript in patients with MDS with the SF3B1 mutation. Induction of this ERFE transcript in primary SF3B1-mutated bone marrow erythroblasts generated a variant protein that maintained the capacity to suppress hepcidin transcription. Plasma concentrations of ERFE were higher in patients with MDS with an SF3B1 gene mutation than in patients with SF3B1 wild-type MDS. Thus, hepcidin suppression by a variant ERFE is likely responsible for the increased iron loading in patients with SF3B1-mutated MDS, suggesting that ERFE could be targeted to prevent iron-mediated toxicity. The expression of the variant ERFE transcript that was restricted to SF3B1-mutated erythroblasts decreased in lenalidomide-responsive anemic patients, identifying variant ERFE as a specific biomarker of clonal erythropoiesis.Entities:
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Year: 2019 PMID: 31292266 PMCID: PMC8005358 DOI: 10.1126/scitranslmed.aav5467
Source DB: PubMed Journal: Sci Transl Med ISSN: 1946-6234 Impact factor: 17.956