RRC ID 90145
著者 El Hoss S, Shangaris P, Brewin J, Psychogyiou ME, Ng C, Pedler L, Rooks H, Gotardo ÉMF, Gushiken LFS, Brito PL, Nicolaides KH, Conran N, Rees DC, Strouboulis J.
タイトル Reduced GATA1 levels are associated with ineffective erythropoiesis in sickle cell anemia.
ジャーナル Haematologica
Abstract Ineffective erythropoiesis (IE) is defined as the abnormal differentiation and excessive destruction of erythroblasts i n the bone marrow, accompanied by an expanded progenitor compartment and relative reduction in the production of reticulocytes. It is a defining feature of many types of anemia, including β-thalassemia. GATA1 is an essential transcription factor for erythroid differentiation, known to be implicated in hematological conditions presenting with IE, including β-thalassemia and congenital dyserythropoietic anemia. However, little is known about the role of GATA1 in the erythropoietic defects recently described in sickle cell anemia (SCA). In the present study, we performed a detailed characterization of the role of GATA1 and ineffective erythropoiesis in SCA using both in vitro and in vivo assay systems. We demonstrate a significant decrease in GATA1 protein levels during SCA erythropoiesis and a concomitant increase in oxidative stress. Furthermore, we found that an increase in the activity of the inflammatory caspase, caspase 1, was driving the decrease in GATA1 levels during SCA erythropoiesis and that, upon inhibition of caspase 1 activity, SCA erythropoiesis was rescued and GATA1 levels partially restored. Our study further elucidates the defect in erythropoiesis in SCA, and may therefore help in the development of novel approaches to normalize the bone marrow niche prior to stem cell transplantation, or facilitate the production of healthy stem cells for gene therapy.
巻・号 110(5)
ページ 1150-1163
公開日 2025-5-1
DOI 10.3324/haematol.2024.286010
PMID 39633531
PMC PMC12050926
MeSH Anemia, Sickle Cell* / blood Anemia, Sickle Cell* / genetics Anemia, Sickle Cell* / metabolism Anemia, Sickle Cell* / pathology Animals Erythropoiesis* GATA1 Transcription Factor* / genetics GATA1 Transcription Factor* / metabolism Humans Male Mice Oxidative Stress
リソース情報
ヒト・動物細胞 HUDEP-2(RCB4557)