An activin receptor IIA ligand trap corrects ineffective erythropoiesis in β-thalassemia
Author(s) -
Michaël Dussiot,
Thiago Trovati Maciel,
Aurélie Fricot,
C. Chartier,
Olivier Nègre,
Joel Paulo Russomano Veiga,
Damien Grapton,
Étienne Paubelle,
Emmanuel Payen,
Yves Beuzard,
Philippe Leboulch,
JeanAntoine Ribeil,
JeanBenoît Arlet,
Francine Côté,
G. Courtois,
Yelena Ginzburg,
Thomas O. Daniel,
Rajesh Chopra,
Victoria Sung,
Olivier Hermine,
Ivan Cruz Moura
Publication year - 2014
Publication title -
nature medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 19.536
H-Index - 547
eISSN - 1546-170X
pISSN - 1078-8956
DOI - 10.1038/nm.3468
Subject(s) - ineffective erythropoiesis , erythropoiesis , erythroblast , activin receptor , autocrine signalling , thalassemia , medicine , transferrin receptor , receptor , endocrinology , beta thalassemia , gdf15 , oxidative stress , apoptosis , biology , anemia , biochemistry
The pathophysiology of ineffective erythropoiesis in β-thalassemia is poorly understood. We report that RAP-011, an activin receptor IIA (ActRIIA) ligand trap, improved ineffective erythropoiesis, corrected anemia and limited iron overload in a mouse model of β-thalassemia intermedia. Expression of growth differentiation factor 11 (GDF11), an ActRIIA ligand, was increased in splenic erythroblasts from thalassemic mice and in erythroblasts and sera from subjects with β-thalassemia. Inactivation of GDF11 decreased oxidative stress and the amount of α-globin membrane precipitates, resulting in increased terminal erythroid differentiation. Abnormal GDF11 expression was dependent on reactive oxygen species, suggesting the existence of an autocrine amplification loop in β-thalassemia. GDF11 inactivation also corrected the abnormal ratio of immature/mature erythroblasts by inducing apoptosis of immature erythroblasts through the Fas-Fas ligand pathway. Taken together, these observations suggest that ActRIIA ligand traps may have therapeutic relevance in β-thalassemia by suppressing the deleterious effects of GDF11, a cytokine which blocks terminal erythroid maturation through an autocrine amplification loop involving oxidative stress and α-globin precipitation.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom