Myoclonus-dystonia: clinical and genetic evaluation of a large cohort

K Ritz1, M C F Gerrits, E M J Foncke

  • 1Department of Neurology, Academic Medical Centre, University of Amsterdam, Amsterdam, The Netherlands.

Abstract

Insights

Genetic analysis for myoclonus-dystonia (M-D) identified epsilon-sarcoglycan (SGCE) gene mutations in definite M-D cases, but many remained unidentified. Copy-number variations were not a significant factor in this M-D cohort.

Area of Science:

  • Genetics
  • Neurology
  • Movement Disorders

Background:

  • Myoclonus-dystonia (M-D) is an inherited autosomal dominant movement disorder.
  • Mutations in the epsilon-sarcoglycan (SGCE) gene are linked to M-D, yet identified in only ~30% of patients.
  • Limited diagnostic criteria and mutation screening methods may contribute to low detection rates.

Purpose of the Study:

  • To investigate the genetic basis of M-D in a Dutch patient cohort.
  • To determine the frequency of SGCE gene mutations and copy-number variations in M-D patients.
  • To evaluate the utility of clinical classification in identifying mutation carriers.

Main Methods:

  • Neurological examination and clinical classification (definite, probable, possible M-D) of 86 index patients.
  • Sequence analysis of the SGCE gene.
  • Screening for SGCE copy-number variations and DYT1 gene mutations.

Main Results:

  • SGCE mutations were found in 50% of definite M-D patients and 4% of probable M-D patients.
  • Thirteen out of 86 patients carried an SGCE mutation, including nonsense, splice site, missense, and deletion types.
  • One patient with possible M-D had a DYT1 gene deletion; copy-number variations were not significant.

Conclusions:

  • SGCE mutations are primarily found in definite M-D cases.
  • A significant proportion of definite M-D cases (50%) lack identifiable SGCE mutations.
  • Copy-number variations play a minor role in the genetic etiology of M-D in this cohort.

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