Author/Authors :
Mohammad, Hamid Pasteur Iinstitute of Iran - Biotechnology Research Center - Molecular Medicine Division, تهران, ايران , Mahjoubi, Frouzandeh National Institute of Genetic Engineering and Biotechnology (NIGEB) - 2Dept of Clinical Genetics , Akbari, Mohammad Taghi tarbiat modares university - Faculty of Medical Sciences - Dept of Medical Genetics, تهران, ايران , Khanahmad, Hossein Pasteur Iinstitute of Iran - BCG Research Center, تهران, ايران , Jamshidi, Fatemeh Pasteur Iinstitute of Iran - Biotechnology Research Center - Molecular Medicine Division, تهران, ايران , Zeinali, Sirous Pasteur Iinstitute of Iran - Biotechnology Research Center - Molecular Medicine Division, تهران, ايران , Karimipoor, Morteza Pasteur Iinstitute of Iran - Biotechnology Research Center - Molecular Medicine Division, تهران, ايران
Abstract :
Background: In the previous study, we have shown that the presence of A allele at position -588 in AGAMA-globin gene was highly frequent and closely associated with fetal hemoglobin elevation among β-thalassemia intermedia patients. Therefore, we decided to investigate whether this allele (A allele at -588) could result in an increase in AGAMA-globin gene expression to ameliorate the severity of the disease in thalassemia patients. Methods: Three constructs containing ju locus control region, AGAMA-globin and (3-globin genes were designed and employed in the transient expression assay. The difference among constructs was in the promoter region of Ay-globin gene (A and G alleles at -588). A construct with T to C base substitution at -175 of AGAMA-globin, created by site-directed mutagenesis, was selected as positive control. The K562 cell line was transfected with the above constructs. Subsequently, the expression of AGAMA-globin gene was determined by quantitative real-time reverse transcription-PCR. Results: There was not a significant increase in the expression of AGAMA-globin gene in the construct containing A allele comparing the one with G allele at -588. Conclusions: -588 (A G) mutation does not play a major role in regulation of AGAMA-globin gene, suggesting that other factors may be involved. Iran. Biomed. J. 15 (1 2): 15-21, 2011
Keywords :
β , thalassemia , Aγ , globin , K562 cells