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Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))

BACKGROUND: Hemoglobin H (Hb H) disease can be caused by compound heterozygosity for two different mutations or from homozygotes for mutations, and conventional genetic methods may lead to misdiagnosis when Hb H disease is combined with a rare β‐thalassemia. METHODS: Hematology parameters and hemogl...

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Autores principales: Qian, Hou, Huang, Jianlin, Xu, Ji, Zhao, Weihua, Ye, Xiufeng, Liu, Wenlan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7667371/
https://www.ncbi.nlm.nih.gov/pubmed/32885601
http://dx.doi.org/10.1002/mgg3.1472
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author Qian, Hou
Huang, Jianlin
Xu, Ji
Zhao, Weihua
Ye, Xiufeng
Liu, Wenlan
author_facet Qian, Hou
Huang, Jianlin
Xu, Ji
Zhao, Weihua
Ye, Xiufeng
Liu, Wenlan
author_sort Qian, Hou
collection PubMed
description BACKGROUND: Hemoglobin H (Hb H) disease can be caused by compound heterozygosity for two different mutations or from homozygotes for mutations, and conventional genetic methods may lead to misdiagnosis when Hb H disease is combined with a rare β‐thalassemia. METHODS: Hematology parameters and hemoglobin electrophoresis analysis, gap‐polymerase chain reaction (gap‐PCR) and reverse dot‐blot hybridization (RDB‐PCR) were employed to identify common α‐thalassemia and Hb H disease. Rare β‐thalassemia mutations were detected by DNA sequencing. RESULTS: Hematological analysis and hemoglobin electrophoresis revealed a mild anemia α(0)‐thalassemia trait (Hb 90 g/L, MCV 71 fL, and MCH 22.7 pg) compound with β (+)‐thalassemia trait (MCV 71 fL, MCH 22.7 pg, and HbA2 5.51%) for the pregnant woman. DNA sequencing for the β‐globin gene revealed rare a -90 (C>T) (HBB: c.‐140 C>T) mutation for the woman. DNA analysis identified that the fetus inherited the α(0)‐thalassemia mutation [‐‐(SEA) (Southeast Asian)] and a rare β (+)‐thalassemia mutation -90 (C>T) (HBB: c.‐140 C>T) from the mother, and the α (+)‐thalassemia mutation [‐α (4.2) (leftward)] from the father. CONCLUSION: We reported a rare -90 (C>T) (HBB: c.‐140 C>T) mutation combined with the ‐‐(SEA)/‐α (4.2) in a family. This finding enriched the mutation spectrum of thalassemia molecular characteristics in China and emphasized the significance in DNA sequencing in mutation screening for the families with thalassemia.
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spelling pubmed-76673712020-11-20 Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2)) Qian, Hou Huang, Jianlin Xu, Ji Zhao, Weihua Ye, Xiufeng Liu, Wenlan Mol Genet Genomic Med Clinical Reports BACKGROUND: Hemoglobin H (Hb H) disease can be caused by compound heterozygosity for two different mutations or from homozygotes for mutations, and conventional genetic methods may lead to misdiagnosis when Hb H disease is combined with a rare β‐thalassemia. METHODS: Hematology parameters and hemoglobin electrophoresis analysis, gap‐polymerase chain reaction (gap‐PCR) and reverse dot‐blot hybridization (RDB‐PCR) were employed to identify common α‐thalassemia and Hb H disease. Rare β‐thalassemia mutations were detected by DNA sequencing. RESULTS: Hematological analysis and hemoglobin electrophoresis revealed a mild anemia α(0)‐thalassemia trait (Hb 90 g/L, MCV 71 fL, and MCH 22.7 pg) compound with β (+)‐thalassemia trait (MCV 71 fL, MCH 22.7 pg, and HbA2 5.51%) for the pregnant woman. DNA sequencing for the β‐globin gene revealed rare a -90 (C>T) (HBB: c.‐140 C>T) mutation for the woman. DNA analysis identified that the fetus inherited the α(0)‐thalassemia mutation [‐‐(SEA) (Southeast Asian)] and a rare β (+)‐thalassemia mutation -90 (C>T) (HBB: c.‐140 C>T) from the mother, and the α (+)‐thalassemia mutation [‐α (4.2) (leftward)] from the father. CONCLUSION: We reported a rare -90 (C>T) (HBB: c.‐140 C>T) mutation combined with the ‐‐(SEA)/‐α (4.2) in a family. This finding enriched the mutation spectrum of thalassemia molecular characteristics in China and emphasized the significance in DNA sequencing in mutation screening for the families with thalassemia. John Wiley and Sons Inc. 2020-09-03 /pmc/articles/PMC7667371/ /pubmed/32885601 http://dx.doi.org/10.1002/mgg3.1472 Text en © 2020 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC. This is an open access article under the terms of the 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 Clinical Reports
Qian, Hou
Huang, Jianlin
Xu, Ji
Zhao, Weihua
Ye, Xiufeng
Liu, Wenlan
Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))
title Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))
title_full Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))
title_fullStr Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))
title_full_unstemmed Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))
title_short Prenatal diagnosis of a rare β‐thalassemia gene -90 (C>T) (HBB: c.‐140 C>T) mutation associated with deletional Hb H disease (‐‐(SEA)/‐α (4.2))
title_sort prenatal diagnosis of a rare β‐thalassemia gene -90 (c>t) (hbb: c.‐140 c>t) mutation associated with deletional hb h disease (‐‐(sea)/‐α (4.2))
topic Clinical Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7667371/
https://www.ncbi.nlm.nih.gov/pubmed/32885601
http://dx.doi.org/10.1002/mgg3.1472
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