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Revisiting a Complex Rearrangement Involving a 619 Base Pairs Deletion, 6 Nucleotide Insertion Followed by a A > G Substitution Causing Β°-Thalassemia Publisher



Dabbaghbagheri S3 ; Ghadami S1, 2 ; Mollazadeh F3 ; Saadat A3 ; Zeinali S1, 3
Authors
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Authors Affiliations
  1. 1. Department of Molecular Medicine, Biotechnology Research Center, Pasteur Institute of Iran, Pasteur St., Tehran, Iran
  2. 2. Department of Medical Genetics, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran
  3. 3. Medical Genetics Lab, Kawsar Human Genetics Research Center, No. 41 Majlesi St., ValiAsr St., Tehran, Iran

Source: Indian Journal of Hematology and Blood Transfusion Published:2016


Abstract

One of the prevalent inherited blood disorders is thalassemia syndrome that characterized by reduction (β+) or absence (β0) of β globin chain synthesis. The β globin (HBB) gene map in the short arm of chromosome 11 and most of the mutations in this gene are single nucleotide substitutions, insertions or deletions of nucleotides. Nucleotide sequence analysis of a partially deleted β-globin gene from an Iranian carrier of β-thalassemia displayed a complex rearrangement involving a 619 base pairs (bp) deletion. This rearrangement had originally been named as the 619 bp deletion and later on as the 619 bp deletion with a 7 bp insertion. In our study, using by single chain sequencing, we have shown that the actual rearrangement involves a 619 bp deletion, a 6 bp insertion followed by a G > A substitution deleting the exon 3 of the β-globin gene. This clarification has to be inserted into the relevant databases as some of them still site the original 619 bp deletion with wrong breakpoints. © 2016, Indian Society of Haematology & Transfusion Medicine.