- Author:
Lin-Yu LIU
;
Fei LIU
;
Si-Chen DU
;
Sha-Yi JIANG
;
Hui-Jun WANG
;
Jin ZHANG
;
Wei WANG
;
Duan MA
1
;
Author Information
- Publication Type:Case Reports
- MeSH: Child, Preschool; Gaucher Disease; genetics; Glucosylceramidase; chemistry; genetics; Humans; Male; Models, Molecular; Mutation, Missense; Protein Structure, Tertiary; Sequence Analysis, DNA
- From: Chinese Medical Journal 2016;129(9):1072-1077
- CountryChina
- Language:English
-
Abstract:
BACKGROUNDGaucher's disease (GD) is an autosomal recessive disorder caused by a deficiency of acid β-glucosidase (glucocerebrosidase [GBA]) that results in the accumulation of glucocerebroside within macrophages. Many mutations have been reported to be associated with this disorder. This study aimed to discover more mutations and provide data for the genetic pattern of the gene, which will help the development of quick and accurate genetic diagnostic tools for this disease.
METHODSGenomic DNA was obtained from peripheral blood leukocytes of the patient and Sanger sequencing is used to sequence GBA gene. Sequence alignments of mammalian β-GBA (GCase) and three-dimensional protein structure prediction of the mutation were made. A construct of this mutant and its compound heterozygous counterpart were used to measure GCase in vitro.
RESULTSGCase is relatively conserved at p.T219A. This novel mutation differs from its wild-type in structure. Moreover, it also causes a reduction in GCase enzyme activity.
CONCLUSIONThis novel mutation (c.655A>G, p.T219A) is a pathogenic missense mutation, which contributes to GD.