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1.
Zhonghua Er Ke Za Zhi ; 51(6): 414-9, 2013 Jun.
Article in Chinese | MEDLINE | ID: mdl-24120057

ABSTRACT

OBJECTIVE: Mucopolysaccharidosis (MPS) type IVA (MPS IVA) is an autosomal recessive lysosomal storage disease caused by deficiency of N-acetylgalactosamine-6-sulfate sulfatase (GALNS) needed to degrade glycosaminoglycanes (GAGs), accumulation of GAGs in the tissue resulting in disorder of function. So far, the small number of articles about clinical study of Chinese MPS IVA were published and only one paper about gene mutation analysis was published. This study aimed to investigate the mutation spectrum and characteristic of GALNS gene in Chinese patients with MPS IVA who were diagnosed in our hospital. METHOD: Thirty-eight patients from 36 families (male 17, female 21) were diagnosed as MPS IVA by GALNS activity determination [(0.85 ± 1.33) nmol/(17 h·mg)] and clinical symptoms during 2006-2012. The average age of diagnosis was (5.7 ± 3.6) years. Mutation analysis of GALNS gene performed performed by PCR-direct DNA sequencing for 38 patients. PCR-restriction fragment length polymorphism analysis was used for validating novel mutation, and also to assess amino acid conservation for novel missense variants in five different species. PolyPhen-2 tool was used to predict the possible impact of missense mutations on the structure and function of the human GALNS protein, etc. Analysis of GALNS activity and gene mutation in amniotic fluid were performed to provide the prenatal diagnosis for some families with MPS type IVA. RESULT: (1) Thirty-eight kinds of mutation in GALNS gene were identified in 38 patients of them, 71% were missense mutations. p. M318R was a hot-spot mutation (21%) tested. Five kinds of mutation i.e., p. P163H, p.G168L, p. A324E, p. L366P and p. F452L were only found in Chinese patients with MPS IVA. Eighteen kinds of novel mutation were detected including p. E315K, p.G304D, p.R251Q, p.Y240C, p.G161E, p.N32D, p.L390P, p. D60E, p. P420S, W403C/T404S, p.L454P, for p.W405X, p. M1I, c.409_ c.420del12, c.1176_1178del3, c.1046delG, c.1188delG and IVS9-2A>C. (2) The polymorphism of novel missense variants were ruled out by the PCR-restriction fragment length polymorphism analysis and no related mutations were found in 50 normal controls. A splice site mutation IVS9-2A>C had been validated by reverse transcription PCR direct sequencing. The amino acid of mutant position of 10 kinds of missense variants are highly conserved and only p. L454 is moderately conserved position. These missense variants were predicted to cause damage to the structure and function of human GALNS protein possibly according to the PolyPhen-2 tool, so these novel missense variants may be disease-causing mutations. (3) Prenatal diagnosis was provided for 7 families and three fetuses were diagnosed as MPS IVA. CONCLUSION: The GALNS gene mutation spectrum in Chinese patients with MPS IVA is really different from that in other countries, five kinds of mutation were only found in Chinese patients with MPS IVA. The reports of hot-spot mutation in Chinese patients were also different, and should be analyzed by more data of gene mutation analysis and epidemiological study.


Subject(s)
Chondroitinsulfatases/genetics , Mucopolysaccharidosis IV/enzymology , Mucopolysaccharidosis IV/genetics , Mutation , Amino Acid Sequence , Asian People/genetics , Base Sequence , Child , Child, Preschool , Chondroitinsulfatases/metabolism , DNA Mutational Analysis , Female , Genotype , Haplotypes , Humans , Infant , Male , Mucopolysaccharidosis IV/pathology , Mutation, Missense , Polymerase Chain Reaction , Protein Conformation
2.
World J Pediatr ; 8(4): 359-62, 2012 Nov.
Article in English | MEDLINE | ID: mdl-23151865

ABSTRACT

BACKGROUND: This paper aims to report GLB1 activities and mutation analysis of three patients from the mainland of China, one with Morquio B disease and two with GM1 gangliosidosis. METHODS: GLB1 activity and GLB1 gene mutation were analyzed in the three patients who were clinically suspected of having Morquio B disease or GM1 gangliosidosis. Novel mutations were analyzed by aligning GLB1 homologs, 100 control chromosomes, and the PolyPhen-2 tool. RESULTS: The enzymatic activity of GLB1 was found to be 5.03, 4.20, and 4.50 nmol/h/mg in the three patients, respectively. Patient 1 was a compound heterozygote for p.[Arg148Cys] and p.[Tyr485Cys] mutations in the GLB1 gene. Patient 2 was a compound heterozygote for p.[Tyr270Phe] and p.[Leu337Pro] mutations. Patient 3 was a homozygote for p.[Asp448Val] mutation. Three mutations (p.[Tyr485Cys], p.[Tyr270Phe] and p.[Leu337Pro]) were novel variants and were predicted to damage GLB1 function. CONCLUSIONS: The enzymatic activity and related gene analysis of ß-galactosidase should be performed in clinically suspected individuals to confirm diagnosis. The three novel mutations, p.[Tyr485Cys], p.[Tyr270Phe], and p.[Leu337Pro], are thought to be disease-causing mutations.


Subject(s)
Gangliosidosis, GM1/genetics , Mucopolysaccharidosis IV/genetics , beta-Galactosidase/genetics , Adolescent , Child, Preschool , Chondroitinsulfatases/metabolism , DNA Mutational Analysis , Fatal Outcome , Gangliosidosis, GM1/enzymology , Gangliosidosis, GM1/epidemiology , Humans , Male , Mongolian Spot/epidemiology , Mucopolysaccharidosis IV/enzymology , Mucopolysaccharidosis IV/epidemiology , Mutation , Skin Neoplasms/epidemiology
3.
Zhonghua Er Ke Za Zhi ; 50(7): 549-53, 2012 Jul.
Article in Chinese | MEDLINE | ID: mdl-22932019

ABSTRACT

OBJECTIVE: To report the results of clinical characteristics, enzyme activity determination and mutation analysis of GLB1 gene in a Chinese patient with mucopolysaccharidosis (MPS) type IVB (Morquio B disease). METHOD: A 14-year-old Chinese boy with MPS type IVB was firstly diagnosed by blood leucocytes galactosamine-6-sulfate sulfatase (GALNS) and ß-galactosidase (GLB1) determination, who was characterized by short stature, multiplex skeletal abnormalities, difficulty in walking. PCR-sequencing analysis was applied to detect the mutations in GLB1 of the patient. RESULT: The patient was characterized by dwarfism, pectus carinatum, kyphosis, normal intelligence, and no neurologic damage of spasms, linguistic capacity and so on. The patient had normal GALNS enzyme activity and very low GLB1 enzyme activity [5.03 nmol/(h·mg) vs. normal value 118 - 413 nmol/(h·mg) ] in leukocytes. A compound heterozygous missense mutations c.442C > T(p.R148C)/c.1454A > G(p.Y485C) in GLB1 gene were detected in this patient. The mutation p.Y485C is a novel variant. With the method of gene analysis of new variant, the mutation p.Y485C was considered to be a pathogenic mutation. CONCLUSION: The MPS IVB patient showed severe multiple skeletal deformities, normal intelligence, no neurologic damage and very low GLB1 enzyme activity, who carries compound heterozygous mutations p.R148C/p.Y485C. The mutation p.Y485C in GLB1 gene may be a novel pathologic mutation of MPS type IVB.


Subject(s)
Mucopolysaccharidosis IV/enzymology , Mucopolysaccharidosis IV/genetics , Mutation, Missense , beta-Galactosidase/genetics , Adolescent , Amino Acid Sequence , Asian People/genetics , Chondroitinsulfatases/genetics , Chondroitinsulfatases/metabolism , DNA Mutational Analysis , Humans , Joints/pathology , Male , Molecular Sequence Data , Mucopolysaccharidosis IV/pathology , Pedigree , Polymerase Chain Reaction , Radiography , Spine/diagnostic imaging , Spine/pathology , beta-Galactosidase/metabolism
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