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The Effect of HBB: c.-121C>T Variant [-71 (C>T)] on the β-Globin Promoter: Case Series Study
Milad Rafat1, Zeinab Allamehzadeh2, Mohammad Shekari1,2
1Department of Medical Genetics, Faculty of Medicine, Hormozgan University of Medical Sciences, Bandar Abbas, Iran.
Insights
Carrier recognition and prenatal diagnosis are key for thalassemia control. A rare HBB gene mutation, c.-121C>T, identified in Iran, causes mild anemia and aids in accurate genetic counseling for beta-thalassemia.
Area of Science:
- Medical Genetics
- Hematology
Background:
- Thalassemia control relies on carrier screening and prenatal diagnosis (PND).
- Rare HBB gene mutations can complicate diagnosis and pregnancy management.
- Understanding the impact of each mutation is crucial for accurate genetic counseling.
Purpose of the Study:
- To investigate the effects of the rare HBB: c.-121C>T mutation in the promoter region.
- To analyze its impact on beta-thalassemia phenotypes and transcription levels.
- To report clinical findings in patients with this mutation in Iran.
Main Methods:
- Retrospective analysis of seven patients with HBB: c.-121C>T mutation.
- Evaluation of blood indices (MCV, MCH, HbA2).
- Transcription level analysis using real-time PCR.
Main Results:
- The HBB: c.-121C>T mutation was found in seven patients over 10 years.
- Patients exhibited mild anemia, with indices milder than typical beta-thalassemia trait.
- One case of beta-thalassemia intermedia was observed in compound heterozygosity.
Conclusions:
- The HBB: c.-121C>T allele induces a mild beta+ phenotype.
- This mutation leads to decreased transcription levels of the HBB gene.
- Accurate identification of rare mutations is vital for effective thalassemia control programs.
Abstract:
One of the effective strategies in controlling thalassemia is recognition of carriers, followed by prenatal diagnosis (PND) to prevent the occurrence of new cases. There are some rare mutations and variants, for which there are not enough evidences of their effects, and can lead to misdiagnosis and even cause confusion in decision about termination of pregnancy. That is why it is very critical to know the effect of each mutation on the β chain gene. The variant of HBB: c.-121C>T [-71 (C>T)] located in the CAAT box of the promoter region, is a rare mutation. We report seven patients in Hormozagn Province, Iran, who were referred to the PND Center of Hormozgan University of Medical Science (HUMS), Bandar Abbas, Iran during 10 years (2010-2020). Briefly, this mutation causes minor changes in blood indices [mean corpuscular volume (MCV): 75.0 ± 4.0 fL; mean corpuscular hemoglobin (MCH): 25.8 ± 2.5 pg; Hb A2: 3.4 ± 0.5%] showed anemia with a trait milder than minor β-thalassemia (β-thal). Though the existence of α mutations (deletions/point mutations) along with HBB: c.-121C>T can change blood indices due to the changes in α/β ratio. The phenotype of β-thal intermedia (β-TI) was observed in one case, who was a compound heterozygosity for codon 15 (G>A)/-71(C>T) (HBB: c.48G>A/HBB: c.-121C>T. The analysis of transcription level by real-time polymerase chain reaction (real-time PCR) confirmed that this allele induces a mild β+ phenotype due to a decrease in the transcription level.
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