The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment

β-thalassaemia is a genetic disorder resulting in a reduction or absence of β-globin gene expression. Due to the high prevalence of β-thalassaemia and the lack of available treatment other than blood transfusion and haematopoietic stem cell (HSC) transplantation, the disease represents a considerabl...

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Main Authors: Lai, Mei I, Mahmoud Ahmed, Nahil Hassan
Format: Article
Published: Bentham Science Publishers 2023
Online Access:http://psasir.upm.edu.my/id/eprint/109353/
https://www.eurekaselect.com/article/129021
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spelling my.upm.eprints.1093532024-08-16T03:46:05Z http://psasir.upm.edu.my/id/eprint/109353/ The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment Lai, Mei I Mahmoud Ahmed, Nahil Hassan β-thalassaemia is a genetic disorder resulting in a reduction or absence of β-globin gene expression. Due to the high prevalence of β-thalassaemia and the lack of available treatment other than blood transfusion and haematopoietic stem cell (HSC) transplantation, the disease represents a considerable burden to clinical and economic systems. Foetal haemoglobin has an appreciated ameliorating effect in β-haemoglobinopathy, as the γ-globin chain substitutes the β-globin chain reduction by pairing with the excess α-globin chain in β-thalassaemia and reduces sickling in sickle cell disease (SCD). BCL11A is a critical regulator and repressor of foetal haemoglobin. Down- regulation of BCL11A in adult erythroblasts and cell lines expressing adult haemoglobin led to a significant increase in foetal haemoglobin levels. Disruption of BCL11A erythroid enhancer resulted in disruption of the BCL11A gene solely in the erythroid lineages and increased γ-globin expression in adult erythroid cells. Autologous haematopoietic stem cell gene therapy represents an attractive treatment option to overcome the immune complications and donor availability associated with allogeneic transplantation. Using genome editing technologies, the disruption of BCL11A to induce γ-globin expression in HSCs has emerged as an alternative approach to treat β-thalassaemia. Targeting the +58 BCL11A erythroid enhancer or BCL11A binding motif at the γ -gene promoter with CRISPR-Cas9 or base editors has successfully disrupted the gene and the binding motif with a subsequent increment in HbF levels. This review outlines the critical role of BCL11A in γ-globin gene silencing and discusses the different genome editing approaches to downregulate BCL11A as a means for ameliorating β-thalassaemia. Bentham Science Publishers 2023-01-27 Article PeerReviewed Lai, Mei I and Mahmoud Ahmed, Nahil Hassan (2023) The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment. Cardiovascular and Hematological Disorders-Drug Targets, 22 (4). 226 - 236. ISSN 1871-529X; ESSN: 2212-4063 https://www.eurekaselect.com/article/129021 10.2174/1871529X23666230123140926
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description β-thalassaemia is a genetic disorder resulting in a reduction or absence of β-globin gene expression. Due to the high prevalence of β-thalassaemia and the lack of available treatment other than blood transfusion and haematopoietic stem cell (HSC) transplantation, the disease represents a considerable burden to clinical and economic systems. Foetal haemoglobin has an appreciated ameliorating effect in β-haemoglobinopathy, as the γ-globin chain substitutes the β-globin chain reduction by pairing with the excess α-globin chain in β-thalassaemia and reduces sickling in sickle cell disease (SCD). BCL11A is a critical regulator and repressor of foetal haemoglobin. Down- regulation of BCL11A in adult erythroblasts and cell lines expressing adult haemoglobin led to a significant increase in foetal haemoglobin levels. Disruption of BCL11A erythroid enhancer resulted in disruption of the BCL11A gene solely in the erythroid lineages and increased γ-globin expression in adult erythroid cells. Autologous haematopoietic stem cell gene therapy represents an attractive treatment option to overcome the immune complications and donor availability associated with allogeneic transplantation. Using genome editing technologies, the disruption of BCL11A to induce γ-globin expression in HSCs has emerged as an alternative approach to treat β-thalassaemia. Targeting the +58 BCL11A erythroid enhancer or BCL11A binding motif at the γ -gene promoter with CRISPR-Cas9 or base editors has successfully disrupted the gene and the binding motif with a subsequent increment in HbF levels. This review outlines the critical role of BCL11A in γ-globin gene silencing and discusses the different genome editing approaches to downregulate BCL11A as a means for ameliorating β-thalassaemia.
format Article
author Lai, Mei I
Mahmoud Ahmed, Nahil Hassan
spellingShingle Lai, Mei I
Mahmoud Ahmed, Nahil Hassan
The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment
author_facet Lai, Mei I
Mahmoud Ahmed, Nahil Hassan
author_sort Lai, Mei I
title The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment
title_short The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment
title_full The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment
title_fullStr The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment
title_full_unstemmed The novel role of the B-cell lymphoma/leukemia 11A (BCL11A) gene in β-thalassaemia treatment
title_sort novel role of the b-cell lymphoma/leukemia 11a (bcl11a) gene in β-thalassaemia treatment
publisher Bentham Science Publishers
publishDate 2023
url http://psasir.upm.edu.my/id/eprint/109353/
https://www.eurekaselect.com/article/129021
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