Sequence and Copy Number Analyses of HEXB Gene in Patients Affected by Sandhoff Disease: Functional Characterization of 9 Novel Sequence Variants


Autoria(s): Zampieri, Stefania; Cattarossi, Silvia; Oller Ramirez, Ana Maria; Rosano, Camillo; Lourenco, Charles Marques; Passon, Nadia; Moroni, Isabella; Uziel, Graziella; Pettinari, Antonella; Stanzial, Franco; Dodelson de Kremer, Raquel; Beatriz Azar, Nydia; Hazan, Filiz; Filocamo, Mirella; Bembi, Bruno; Dardis, Andrea
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

05/11/2013

05/11/2013

2012

Resumo

Sandhoff disease (SD) is a lysosomal disorder caused by mutations in the HEXB gene. To date, 43 mutations of HEXB have been described, including 3 large deletions. Here, we have characterized 14 unrelated SD patients and developed a Multiplex Ligation-dependent Probe Amplification (MLPA) assay to investigate the presence of large HEXB deletions. Overall, we identified 16 alleles, 9 of which were novel, including 4 sequence variation leading to aminoacid changes [c.626C>T (p.T209I), c.634C>A (p.H212N), c.926G>T (p.C309F), c.1451G>A (p.G484E)] 3 intronic mutations (c.1082+5G>A, c.1242+1G>A, c.1169+5G>A), 1 nonsense mutation c.146C>A (p.S49X) and 1 small in-frame deletion c.1260_1265delAGTTGA (p.V421_E422del). Using the new MLPA assay, 2 previously described deletions were identified. In vitro expression studies showed that proteins bearing aminoacid changes p.T209I and p.G484E presented a very low or absent activity, while proteins bearing the p.H212N and p.C309F changes retained a significant residual activity. The detrimental effect of the 3 novel intronic mutations on the HEXB mRNA processing was demonstrated using a minigene assay. Unprecedentedly, minigene studies revealed the presence of a novel alternative spliced HEXB mRNA variant also present in normal cells. In conclusion, we provided new insights into the molecular basis of SD and validated an MLPA assay for detecting large HEXB deletions.

Italian Health Ministry

Italian Health Ministry [RF3107]

Telethon Genetic Biobank Network

Telethon Genetic Biobank Network [GTB07001]

Italian Health Department

Italian Health Department

Identificador

PLOS ONE, SAN FRANCISCO, v. 7, n. 7, supl. 4, Part 1-2, pp. 146-156, 46569, 2012

1932-6203

http://www.producao.usp.br/handle/BDPI/41639

10.1371/journal.pone.0041516

http://dx.doi.org/10.1371/journal.pone.0041516

Idioma(s)

eng

Publicador

PUBLIC LIBRARY SCIENCE

SAN FRANCISCO

Relação

PLOS ONE

Direitos

openAccess

Copyright PUBLIC LIBRARY SCIENCE

Palavras-Chave #COMPOUND HETEROZYGOSITY #MUTATION NOMENCLATURE #GM2 GANGLIOSIDOSIS #GAUCHER-DISEASE #DELETION #ALLELES #DNA #EPILEPSY #MULTIDISCIPLINARY SCIENCES
Tipo

article

original article

publishedVersion