A Novel Pathological ARSB Mutation (c.870G>A; p.Trp290stop) in Mucopolysaccharidosis Type VI Patients

Veysel S Hançer1, Murat Büyükdoğan2, Anila Babameto-Laku3

  • 1Department of Medical Biology, Faculty of Medicine, Istinye University, Istanbul, Turkey.

Molecular Syndromology
|February 6, 2020
PubMed

Insights

Mucopolysaccharidosis type VI (MPS VI), or Maroteaux-Lamy syndrome, is a genetic disorder caused by arylsulfatase B deficiency. A novel mutation was identified in an Albanian family, confirming the genetic basis of MPS VI.

Area of Science:

  • Genetics
  • Biochemistry
  • Rare Diseases

Background:

  • Mucopolysaccharidosis type VI (MPS VI), also known as Maroteaux-Lamy syndrome, is a lysosomal storage disorder resulting from arylsulfatase B enzyme deficiency.
  • Clinical presentation varies with residual enzyme activity, featuring skeletal abnormalities, corneal clouding, and distinct facial dysmorphia, but normal intellectual development.
  • Elevated urinary glycosaminoglycans are a key diagnostic indicator, with diagnosis confirmed by enzyme assays demonstrating low arylsulfatase B activity.

Purpose of the Study:

  • To investigate the genetic basis of MPS VI in an Albanian family.
  • To identify novel mutations responsible for arylsulfatase B deficiency and MPS VI.
  • To contribute to the understanding of MPS VI pathogenesis and genetic diversity.

Main Methods:

  • Clinical examination of affected siblings.
  • Biochemical tests to assess enzyme activity and glycosaminoglycan levels.
  • Molecular analysis, including genetic sequencing, to identify mutations in the ARSB gene.

Main Results:

  • An Albanian family with siblings diagnosed with MPS VI was identified.
  • A novel homozygous nonsense mutation, c.870G>A, in the ARSB gene was discovered.
  • This mutation was confirmed to be responsible for the complete loss of arylsulfatase B enzyme activity.

Conclusions:

  • The study identified a novel mutation causing MPS VI in an Albanian family.
  • This finding highlights the importance of molecular diagnostics in rare genetic disorders.
  • Understanding specific mutations aids in comprehending disease mechanisms and potential therapeutic strategies.

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