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Molecular characterization of MPS IIIA, MPS IIIB and MPS IIIC in Tunisian patients
S Ouesleti1, V Brunel, H Ben Turkia
1Laboratoire de Biochimie de l'Hôpital Farhat Hached, Sousse, Tunisia.
Abstract:
Sanfilippo syndrome (mucopolysaccharidosis type III, MPS III) is a progressive disorder in which patients are characterized by severe central nervous system degeneration together with mild somatic disease. MPS III results from a deficiency in one of the four enzymes involved in the heparan sulfate degradation, with sulfamidase (SGSH), α-N-acetylglucosaminidase (NAGLU), acetyl-coenzyme A: α-glucosaminide N-acetyltransferase (HGSNAT), and N-acetylglucosamine-6-sulfatase (GNS) being deficient respectively in MPS IIIA, MPS IIIB, MPS IIIC and MPS IIID. Mutation screening using PCR reaction/sequencing analysis on genomic DNA fragments was performed in seven Tunisian index cases with MPS IIIA, three with MPS IIIB and two with MPS IIIC. QMPSF (Quantitative Multiplex PCR of Short fluorescent Fragments) analysis was developed for the detection of genomic deletions and duplications in the SGSH gene. These approaches allowed the identification of 11 mutations, 8 of them were novel including a mutation involving the start codon (p.Met1?), one small duplication (p.Leu11AlafsX22), one small deletion (p.Val361SerfsX52) and a large deletion of exon 1 to exon 5 in the SGSH gene, one missense mutation (p.Pro604Leu) and one nonsense mutation (p.Tyr558X) in the NAGLU gene and, finally, one missense mutation (p.Trp627Cys) and one nonsense mutation (p.Trp403X) in the HGSNAT gene.
Insights
This study identified 11 mutations, including 8 novel ones, in genes responsible for Sanfilippo syndrome (MPS III) in Tunisian patients. These findings advance understanding of mucopolysaccharidosis type III genetic basis.
Area of Science:
- Genetics
- Biochemistry
- Rare Diseases
Background:
- Sanfilippo syndrome (mucopolysaccharidosis type III, MPS III) is a severe neurodegenerative disorder.
- MPS III arises from deficiencies in heparan sulfate degradation enzymes: SGSH, NAGLU, HGSNAT, and GNS.
Purpose of the Study:
- To identify mutations in genes causing MPS III in Tunisian patients.
- To characterize novel mutations in SGSH, NAGLU, and HGSNAT genes.
Main Methods:
- Mutation screening of genomic DNA using PCR and sequencing.
- Quantitative Multiplex PCR of Short fluorescent Fragments (QMPSF) for SGSH gene deletions/duplications.
- Analysis of seven MPS IIIA, three MPS IIIB, and two MPS IIIC cases.
Main Results:
- Eleven mutations were identified across SGSH, NAGLU, and HGSNAT genes.
- Eight novel mutations were discovered, including start codon, duplication, deletion, and missense/nonsense mutations.
- A large deletion of exons 1-5 in the SGSH gene was detected.
Conclusions:
- Genetic characterization of Tunisian MPS III patients reveals novel mutations.
- These findings contribute to understanding the molecular basis of Sanfilippo syndrome.
- The study highlights the genetic heterogeneity of MPS III.
