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Steroid resistance in Diamond Blackfan anemia associates with p57Kip2 dysregulation in erythroid progenitors.
Ashley, Ryan J; Yan, Hongxia; Wang, Nan; Hale, John; Dulmovits, Brian M; Papoin, Julien; Olive, Meagan E; Udeshi, Namrata D; Carr, Steven A; Vlachos, Adrianna; Lipton, Jeffrey M; Da Costa, Lydie; Hillyer, Christopher; Kinet, Sandrina; Taylor, Naomi; Mohandas, Narla; Narla, Anupama; Blanc, Lionel.
Affiliation
  • Ashley RJ; Department of Molecular Medicine and Pediatrics, Donald and Barbara Zucker School of Medicine, Hofstra/Northwell, Hempstead, New York, USA.
  • Yan H; Center for Autoimmunity, Musculoskeletal and Hematopoietic Diseases, The Feinstein Institutes for Medical Research, Manhasset, New York, USA.
  • Wang N; Red Cell Physiology Laboratory, New York Blood Center, New York, New York, USA.
  • Hale J; Institut de Génétique Moléculaire de Montpellier, University of Montpellier, Montpellier, France.
  • Dulmovits BM; Department of Pediatrics, Stanford University School of Medicine, Stanford, California, USA.
  • Papoin J; Red Cell Physiology Laboratory, New York Blood Center, New York, New York, USA.
  • Olive ME; Department of Molecular Medicine and Pediatrics, Donald and Barbara Zucker School of Medicine, Hofstra/Northwell, Hempstead, New York, USA.
  • Udeshi ND; Center for Autoimmunity, Musculoskeletal and Hematopoietic Diseases, The Feinstein Institutes for Medical Research, Manhasset, New York, USA.
  • Carr SA; Center for Autoimmunity, Musculoskeletal and Hematopoietic Diseases, The Feinstein Institutes for Medical Research, Manhasset, New York, USA.
  • Vlachos A; Proteomics Platform, Broad Institute, Massachusetts Institute of Technology and Harvard University, Cambridge, Massachusetts, USA.
  • Lipton JM; Proteomics Platform, Broad Institute, Massachusetts Institute of Technology and Harvard University, Cambridge, Massachusetts, USA.
  • Da Costa L; Proteomics Platform, Broad Institute, Massachusetts Institute of Technology and Harvard University, Cambridge, Massachusetts, USA.
  • Hillyer C; Department of Molecular Medicine and Pediatrics, Donald and Barbara Zucker School of Medicine, Hofstra/Northwell, Hempstead, New York, USA.
  • Kinet S; Center for Autoimmunity, Musculoskeletal and Hematopoietic Diseases, The Feinstein Institutes for Medical Research, Manhasset, New York, USA.
  • Taylor N; Pediatric Hematology/Oncology, Cohen Children's Medical Center, New Hyde Park, New York, USA.
  • Mohandas N; Department of Molecular Medicine and Pediatrics, Donald and Barbara Zucker School of Medicine, Hofstra/Northwell, Hempstead, New York, USA.
  • Narla A; Center for Autoimmunity, Musculoskeletal and Hematopoietic Diseases, The Feinstein Institutes for Medical Research, Manhasset, New York, USA.
  • Blanc L; Pediatric Hematology/Oncology, Cohen Children's Medical Center, New Hyde Park, New York, USA.
J Clin Invest ; 130(4): 2097-2110, 2020 04 01.
Article de En | MEDLINE | ID: mdl-31961825
ABSTRACT
Despite the effective clinical use of steroids for the treatment of Diamond Blackfan anemia (DBA), the mechanisms through which glucocorticoids regulate human erythropoiesis remain poorly understood. We report that the sensitivity of erythroid differentiation to dexamethasone is dependent on the developmental origin of human CD34+ progenitor cells, specifically increasing the expansion of CD34+ progenitors from peripheral blood (PB) but not cord blood (CB). Dexamethasone treatment of erythroid-differentiated PB, but not CB, CD34+ progenitors resulted in the expansion of a newly defined CD34+CD36+CD71hiCD105med immature colony-forming unit-erythroid (CFU-E) population. Furthermore, proteomics analyses revealed the induction of distinct proteins in dexamethasone-treated PB and CB erythroid progenitors. Dexamethasone treatment of PB progenitors resulted in the specific upregulation of p57Kip2, a Cip/Kip cyclin-dependent kinase inhibitor, and we identified this induction as critical; shRNA-mediated downregulation of p57Kip2, but not the related p27Kip1, significantly attenuated the impact of dexamethasone on erythroid differentiation and inhibited the expansion of the immature CFU-E subset. Notably, in the context of DBA, we found that steroid resistance was associated with dysregulated p57Kip2 expression. Altogether, these data identify a unique glucocorticoid-responsive human erythroid progenitor and provide new insights into glucocorticoid-based therapeutic strategies for the treatment of patients with DBA.
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Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Résistance aux substances / Dexaméthasone / Précurseurs érythroïdes / Régulation positive / Anémie de Blackfan-Diamond / Inhibiteur p57 de kinase cycline-dépendante Type d'étude: Risk_factors_studies Limites: Adult / Female / Humans / Male Langue: En Journal: J Clin Invest Année: 2020 Type de document: Article Pays d'affiliation: États-Unis d'Amérique

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Résistance aux substances / Dexaméthasone / Précurseurs érythroïdes / Régulation positive / Anémie de Blackfan-Diamond / Inhibiteur p57 de kinase cycline-dépendante Type d'étude: Risk_factors_studies Limites: Adult / Female / Humans / Male Langue: En Journal: J Clin Invest Année: 2020 Type de document: Article Pays d'affiliation: États-Unis d'Amérique
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