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1.
Gene ; 561(1): 124-31, 2015 Apr 25.
Article in English | MEDLINE | ID: mdl-25681614

ABSTRACT

Pompe disease is an autosomal recessive disorder linked to GAA gene that leads to a multi-system intralysosomal accumulation of glycogen. Mutation identification in the GAA gene can be very important for early diagnosis, correlation between genotype-phenotype and therapeutic intervention. For this purpose, peripheral blood from 57 individuals susceptible to Pompe disease was collected and all exons of GAA gene were amplified; the sequences and the mutations were analyzed in silico to predict possible impact on the structure and function of the human protein. In this study, 46 individuals presented 33 alterations in the GAA gene sequence, among which five (c.547-67C>G, c.547-39T>G, p.R437H, p.L641V and p.L705P) have not been previously described in the literature. The alterations in the coding region included 15 missense mutations, three nonsense mutations and one deletion. One insertion and other 13 single base changes were found in the non-coding region. The mutation p.G611D was found in homozygosis in a one-year-old child, who presented low levels of GAA activity, hypotonia and hypertrophic cardiomyopathy. Two patients presented the new mutation p.L705P in association with c.-32-13T>G. They had low levels of GAA activity and developed late onset Pompe disease. In our study, we observed alterations in the GAA gene originating from Asians, African-Americans and Caucasians, highlighting the high heterogeneity of the Brazilian population. Considering that Pompe disease studies are not very common in Brazil, this study will help to better understand the potential pathogenic role of each change in the GAA gene. Furthermore, a precise and early molecular analysis improves genetic counseling besides allowing for a more efficient treatment in potential candidates.


Subject(s)
Glycogen Storage Disease Type II/genetics , Glycogen/metabolism , alpha-Glucosidases/genetics , Adolescent , Adult , Black or African American/genetics , Asian People/genetics , Base Sequence , Brazil , Cardiomyopathy, Hypertrophic/genetics , Child , Child, Preschool , Codon, Nonsense , Early Diagnosis , Female , Genetic Association Studies , Genetic Predisposition to Disease , Genetic Testing , Humans , Infant , Male , Middle Aged , Muscle Hypotonia/genetics , Mutation, Missense , Sequence Analysis, DNA , Sequence Deletion , White People/genetics , Young Adult
2.
J Hum Genet ; 57(6): 347-51, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22551898

ABSTRACT

Fabry disease (FD) is an X-linked inborn error of glycosphingolipid catabolism that results from mutations in the alpha-galactosidase A (GLA) gene. Evaluating the enzymatic activity in male individuals usually performs the diagnosis of the disease, but in female carriers the diagnosis based only on enzyme assays is often inconclusive. In this work, we analyzed 568 individuals from 102 families with suspect of FD. Overall, 51 families presented 38 alterations in the GLA gene, among which 19 were not previously reported in literature. The alterations included 17 missense mutations, 7 nonsense mutations, 7 deletions, 6 insertions and 1 in the splice site. Six alterations (R112C, R118C, R220X, R227X, R342Q and R356W) occurred at CpG dinucleotides. Five mutations not previously described in the literature (A156D, K237X, A292V, I317S, c.1177_1178insG) were correlated with low GLA enzyme activity and with prediction of molecular damages. From the 13 deletions and insertions, 7 occurred in exons 6 or 7 (54%) and 11 led to the formation of a stop codon. The present study highlights the detection of new genomic alterations in the GLA gene in the Brazilian population, facilitating the selection of patients for recombinant enzyme-replacement trials and offering the possibility to perform prenatal diagnosis.


Subject(s)
Fabry Disease/diagnosis , Fabry Disease/genetics , Mutation , alpha-Galactosidase/genetics , Brazil , Exons , Family , Female , Genetic Predisposition to Disease , Humans , Male , RNA Splice Sites , Sequence Analysis, DNA , alpha-Galactosidase/blood
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