Literature DB >> 12779270

Analysis of beta-thalassemia mutations in northern Thailand using an automated fluorescence DNA sequencing technique.

Supatra Sirichotiyakul1, Rattika Saetung, Torpong Sanguansermsri.   

Abstract

A total of 218 beta-thalassemia (thal) genes from 109 beta-thal major patients were characterized using an automated fluorescence DNA sequencing technique. Eight different mutations were identified in all 218 alleles (100%). Four common mutations accounted for 96.8% [49.5% were codons 41/42 (-TTCT), 34.4% were codon 17 (A --> T), 6.9% were IVS-I-1 (G --> T) and, 6.0% were codons 71/72 (+A)]. There were three cases of -28 (A --> G) and one of IVS-II-654 (C --> T), mutations that have been previously described in Thai subjects. We also identified two mutations in the beta-globin promoter region which have not been reported in Thailand before [-31 (A --> G) and -87 (C --> A)]. Although these mutations are described as beta+-thal, the compound heterozygote with one of the common beta(o)-thal mutations exhibits the phenotype of beta-thal major. The frequency of beta-thal genes in northern Thailand were similar to the northeastern region, but different from those reported in southern and central Thailand, where IVS-I-5 (G --> C) and IVS-II-654 (C --> T) were the second most common anomalies, respectively. The spectrum of beta-globin gene mutations from this study will be useful for planning a prenatal diagnosis program especially for this region of Thailand.

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Year:  2003        PMID: 12779270     DOI: 10.1081/hem-120021541

Source DB:  PubMed          Journal:  Hemoglobin        ISSN: 0363-0269            Impact factor:   0.849


  7 in total

1.  High-resolution melting analysis for prenatal diagnosis of beta-thalassemia in northern Thailand.

Authors:  Pimlak Charoenkwan; Supatra Sirichotiyakul; Arunee Phusua; Sudjai Suanta; Kanda Fanhchaksai; Rattika Sae-Tung; Torpong Sanguansermsri
Journal:  Int J Hematol       Date:  2017-08-08       Impact factor: 2.490

2.  Molecular characteristics of thalassemia and hemoglobin variants in prenatal diagnosis program in northern Thailand.

Authors:  Kanittha Mankhemthong; Arunee Phusua; Sudjai Suanta; Pitipong Srisittipoj; Pimlak Charoenkwan; Torpong Sanguansermsri
Journal:  Int J Hematol       Date:  2019-06-25       Impact factor: 2.490

3.  Molecular analysis of beta-globin gene mutations among Thai beta-thalassemia children: results from a single center study.

Authors:  Boonchai Boonyawat; Chalinee Monsereenusorn; Chanchai Traivaree
Journal:  Appl Clin Genet       Date:  2014-12-10

4.  Prevalence and Genetic Analysis of α- and β-Thalassemia and Sickle Cell Anemia in Southwest Iran.

Authors:  Forozan H Nezhad; Khojasteh H Nezhad; Parastoo M Choghakabodi; Bijan Keikhaei
Journal:  J Epidemiol Glob Health       Date:  2018-12

5.  Rapid molecular diagnostics of large deletional β0-thalassemia (3.5 kb and 45 kb) using colorimetric LAMP in various thalassemia genotypes.

Authors:  Wanicha Tepakhan; Wittaya Jomoui
Journal:  Heliyon       Date:  2021-11-12

6.  Genotype-phenotype correlation among beta-thalassemia and beta-thalassemia/HbE disease in Thai children: predictable clinical spectrum using genotypic analysis.

Authors:  Chanchai Traivaree; Chalinee Monsereenusorn; Piya Rujkijyanont; Warakorn Prasertsin; Boonchai Boonyawat
Journal:  J Blood Med       Date:  2018-04-10

7.  The shortcut strategy for beta thalassemia prevention.

Authors:  Narutchala Suwannakhon; Khajohnsilp Pongsawatkul; Teerapat Seeratanachot; Khwanruedee Mahingsa; Arunee Pingyod; Wanwipa Bumrungpakdee; Torpong Sanguansermsri
Journal:  Hematol Rep       Date:  2018-05-25
  7 in total

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