4.7 Review

The genetics of dystonia: new twists in an old tale

Journal

BRAIN
Volume 136, Issue -, Pages 2017-2037

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/brain/awt138

Keywords

dystonia; genetics; molecular mechanisms; clinical phenotype

Funding

  1. Medical Research council
  2. Wellcome Trust [WT089698/Z/09/Z]
  3. Bachmann-Strauss Dystonia and Parkinson Foundation
  4. MRC [MC_G1000735] Funding Source: UKRI
  5. Medical Research Council [MC_G1000735] Funding Source: researchfish
  6. Parkinson's UK [G-1107] Funding Source: researchfish

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Dystonia is a common movement disorder seen by neurologists in clinic. Genetic forms of the disease are important to recognize clinically and also provide valuable information about possible pathogenic mechanisms within the wider disorder. In the past few years, with the advent of new sequencing technologies, there has been a step change in the pace of discovery in the field of dystonia genetics. In just over a year, four new genes have been shown to cause primary dystonia (CIZ1, ANO3, TUBB4A and GNAL), PRRT2 has been identified as the cause of paroxysmal kinesigenic dystonia and other genes, such as SLC30A10 and ATP1A3, have been linked to more complicated forms of dystonia or new phenotypes. In this review, we provide an overview of the current state of knowledge regarding genetic forms of dystonia-related to both new and well-known genes alike-and incorporating genetic, clinical and molecular information. We discuss the mechanistic insights provided by the study of the genetic causes of dystonia and provide a helpful clinical algorithm to aid clinicians in correctly predicting the genetic basis of various forms of dystonia.

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