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Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania

Fetal hemoglobin (HbF) is a recognized modulator of sickle cell disease (SCD) severity. HbF levels are strongly influenced by genetic variants at three major genetic loci, Xmn1‐HBG2, HMIP‐2, and BCL11A, but the effect of these loci on the hematological phenotype in SCD, has so far not been investiga...

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Autores principales: Mtatiro, Siana Nkya, Makani, Julie, Mmbando, Bruno, Thein, Swee Lay, Menzel, Stephan, Cox, Sharon E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737118/
https://www.ncbi.nlm.nih.gov/pubmed/25263325
http://dx.doi.org/10.1002/ajh.23859
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author Mtatiro, Siana Nkya
Makani, Julie
Mmbando, Bruno
Thein, Swee Lay
Menzel, Stephan
Cox, Sharon E.
author_facet Mtatiro, Siana Nkya
Makani, Julie
Mmbando, Bruno
Thein, Swee Lay
Menzel, Stephan
Cox, Sharon E.
author_sort Mtatiro, Siana Nkya
collection PubMed
description Fetal hemoglobin (HbF) is a recognized modulator of sickle cell disease (SCD) severity. HbF levels are strongly influenced by genetic variants at three major genetic loci, Xmn1‐HBG2, HMIP‐2, and BCL11A, but the effect of these loci on the hematological phenotype in SCD, has so far not been investigated. In a cohort of individuals with SCD in Tanzania (HbSS and HbS/β° thalassemia, n = 726, aged 5 or older), HbF levels were positively correlated with hemoglobin, red blood cell (RBC) indices, mean corpuscular volume (MCV), and mean corpuscular hemoglobin (MCH), and negatively with white blood cell (WBC) and platelet counts (all P < 0.0001). We subsequently assessed the contribution of the three HbF modifier loci and detected diverse effects, including a reduction in anemia, leukocytosis, and thrombocytosis associated with certain HbF‐promoting alleles. The presence of the ‘T’ allele at Xmn1‐HBG2 led to a significant increase in hemoglobin (P = 9.8 × 10(−3)) but no changes in cellular hemoglobin content. Xmn1‐HBG2 ‘T’ also has a weak effect decreasing WBC (P = 0.06) and platelet (P = 0.06) counts. The BCL11A variant (rs11886868‐‘C’) increases hemoglobin (P = 2 × 10(−3)) and one of the HBS1L‐MYB variants decreases WBC values selectively (P = 2.3 × 10(−4)). The distinct pattern of effects of each variant suggests that both, disease alleviation through increased HbF production, and ‘pleiotropic’ effects on blood cells, are involved, affecting a variety of pathways. Am. J. Hematol. 90:E1–E4, 2015. © 2014 Wiley Periodicals, Inc.
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spelling pubmed-47371182016-02-11 Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania Mtatiro, Siana Nkya Makani, Julie Mmbando, Bruno Thein, Swee Lay Menzel, Stephan Cox, Sharon E. Am J Hematol E‐ONLY Articles Fetal hemoglobin (HbF) is a recognized modulator of sickle cell disease (SCD) severity. HbF levels are strongly influenced by genetic variants at three major genetic loci, Xmn1‐HBG2, HMIP‐2, and BCL11A, but the effect of these loci on the hematological phenotype in SCD, has so far not been investigated. In a cohort of individuals with SCD in Tanzania (HbSS and HbS/β° thalassemia, n = 726, aged 5 or older), HbF levels were positively correlated with hemoglobin, red blood cell (RBC) indices, mean corpuscular volume (MCV), and mean corpuscular hemoglobin (MCH), and negatively with white blood cell (WBC) and platelet counts (all P < 0.0001). We subsequently assessed the contribution of the three HbF modifier loci and detected diverse effects, including a reduction in anemia, leukocytosis, and thrombocytosis associated with certain HbF‐promoting alleles. The presence of the ‘T’ allele at Xmn1‐HBG2 led to a significant increase in hemoglobin (P = 9.8 × 10(−3)) but no changes in cellular hemoglobin content. Xmn1‐HBG2 ‘T’ also has a weak effect decreasing WBC (P = 0.06) and platelet (P = 0.06) counts. The BCL11A variant (rs11886868‐‘C’) increases hemoglobin (P = 2 × 10(−3)) and one of the HBS1L‐MYB variants decreases WBC values selectively (P = 2.3 × 10(−4)). The distinct pattern of effects of each variant suggests that both, disease alleviation through increased HbF production, and ‘pleiotropic’ effects on blood cells, are involved, affecting a variety of pathways. Am. J. Hematol. 90:E1–E4, 2015. © 2014 Wiley Periodicals, Inc. John Wiley and Sons Inc. 2014-10-20 2015-01 /pmc/articles/PMC4737118/ /pubmed/25263325 http://dx.doi.org/10.1002/ajh.23859 Text en © 2014 The Authors. American Journal of Hematology Published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle E‐ONLY Articles
Mtatiro, Siana Nkya
Makani, Julie
Mmbando, Bruno
Thein, Swee Lay
Menzel, Stephan
Cox, Sharon E.
Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania
title Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania
title_full Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania
title_fullStr Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania
title_full_unstemmed Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania
title_short Genetic variants at HbF‐modifier loci moderate anemia and leukocytosis in sickle cell disease in Tanzania
title_sort genetic variants at hbf‐modifier loci moderate anemia and leukocytosis in sickle cell disease in tanzania
topic E‐ONLY Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737118/
https://www.ncbi.nlm.nih.gov/pubmed/25263325
http://dx.doi.org/10.1002/ajh.23859
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