Carta
Detection of mutations in GATA1 gene using automated denaturing high-performance liquid chromatography and direct sequencing in children with Down syndrome
Fecha
2009-01-01Registro en:
Leukemia & Lymphoma. Abingdon: Taylor & Francis Ltd, v. 50, n. 5, p. 834-840, 2009.
1042-8194
10.1080/10428190902829433
WOS:000266201800025
Autor
Amorim, Marcia R.
Figueiredo, Alexandre B. C.
Splendore, Alessandra
Magalhaes, Isis Q.
Pombo-de-Oliveira, Maria S.
El-Jaick, Kenia B.
D'andrea, Maria Lydia
Aquino, Jozina
Alencar, Dora Marcia
Brandalise, Silvia R.
Burlemaqui, Lilian
Cardoso, Teresa Cristina
Carvalho, Eni Guimaraes
Coser, Virginia M.
Costa, Imarui
Dorea, Dolores
Drumond, Mauricio
Lopes, Venancio Gomes
Mendonca, Nubia
Lee, Maria Lucia M. [UNIFESP]
Lopes, Luis Fernando
Mendonca, Carmen M.
Nogueira, Flavia
Pimenta, Flavia
Pinheiro, Vitoria P.
Da Silva, Denise Bousfield
Sobral, Elaine
Vargas, Fernando R.
Werneck, Fernando
Institución
Resumen
Denaturing high-performance liquid chromatography (dHPLC) was developed to screen DNA variations by separating heteroduplex and homoduplex DNA fragments by ion-pair reverse-phase liquid chromatography. in this study, we have evaluated the dHPLC screening method and direct sequencing for the detection of GATA1 mutations in peripheral blood and bone marrow aspirates samples from children with Down syndrome (DS). Cases were ascertained consecutively as part of an epidemiological study of DS and hematological disorders in Brazil. A total of 130 samples corresponding to 115 children with DS were analysed using dHPLC and direct sequencing methods to detect mutations in GATA1 exons 2, 3 and 4 gene sequences. the overall detection rate of sequencing and dHPLC screening methods was similar. Twenty mutations were detected in exon 2 and one mutation in exon 3 (c.231_232 dupGT) sequences of acute megakaryoblastic leukemia and transient leukemia samples. Four GATA1 mutations were newly described [c.155CG; c.156_178 del23 bp; c.29_30 del GG; c.182CA and c.151AT,c.153_162 del 10 bp). Out of four, three had single nucleotide change. in conclusion, our results indicate that dHPLC is an efficient and valuable tool for GATA1 mutational analysis.