Abstract
To characterise the phenotype of a family with paroxysmal exercise induced dystonia (PED) and migraine and establish whether it is linked to the paroxysmal non-kinesigenic dyskinesia (PNKD) locus on chromosome 2q33-35, the familial hemiplegic migraine (FHM) locus on chromosome 19p, or the familial infantile convulsions and paroxysmal choreoathetosis (ICCA syndrome) locus on chromosome 16. A family, comprising 30 members, was investigated. Fourteen family members in two generations including three spouses were examined. Haplotypes were reconstructed for all the available family members by typing several microsatellite markers spanning the PNKD, FHM, and ICCA loci. Additionally, the four exons containing the known FHM mutations were sequenced. Of 14 members examined four were definitely affected and one member was affected by history. The transmission pattern in this family was autosomal dominant with reduced penetrance. Mean age of onset in affected members was 12 (range 9-15 years). Male to female ratio was 3:1. Attacks of PED in affected members were predominantly dystonic and lasted between 15 and 30 minutes. They were consistently precipitated by walking but could also occur after other exercise. Generalisation did not occur. Three of the affected members in the family also had migraine without aura. Linkage of the disease to the PNKD, FHM, or ICCA loci was excluded as no common haplotype was shared by all the affected members for each locus. In addition, direct DNA sequential analysis of the FHM gene (CACNL1A4) ruled out all known FHM point mutations. This family presented with the classic phenotype of PED and is not linked to the PNKD, FHM, or ICCA loci. A new gene, possibly coding for an ion channel, is likely to be the underlying cause of the disease.
MeSH Terms
Adolescent
Adult
Child
Chromosomes, Human, Pair 16/genetics
Chromosomes, Human, Pair 19/genetics
Chromosomes, Human, Pair 2/genetics
DNA Mutational Analysis
Dystonia/etiology,genetics
Exercise
Female
Genetic Linkage
Humans
Male
Migraine Disorders/etiology,genetics
Movement Disorders/genetics
Pedigree
Phenotype
Seizures/etiology,genetics
Sex Factors
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Münchau A
Department of Clinical Neurology, Institute of Neurology, Queen Square, University College London, London WC1N 3BG, UK.
Valente E M
Shahidi G A
Eunson L H
Hanna M G
Quinn N P
Schapira A H
Wood N W
Bhatia K P
References (23)
23 references, click to expand
-
Paroxysmal kinesigenic choreoathetosis. An entity within the paroxysmal choreoathetosis syndrome. Description of 10 cases, including 1 autopsied.
Neurology. 1967 Jul;17(7):680-90
PMID: 6067487
-
Paroxysmal kinesigenic choreoathetosis: a report of 26 patients.
J Neurol. 1999 Feb;246(2):120-6
PMID: 10195407
-
Paroxysmal dystonic choreoathetosis in a patient with familial ataxia.
Neurology. 1982 Oct;32(10):1184-6
PMID: 6889704
-
Familial paroxysmal dystonia induced by exercise.
J Neurol Neurosurg Psychiatry. 1984 Mar;47(3):275-9
PMID: 6707673
-
Concept and classification of dystonia.
Adv Neurol. 1988;50:1-8
PMID: 3041755
-
Familial paroxysmal dystonic choreoathetosis: a family study.
Mov Disord. 1987;2(3):187-92
PMID: 3504549
-
Typical and atypical forms of paroxysmal choreoathetosis.
Dev Med Child Neurol. 1989 Oct;31(5):670-4
PMID: 2806747
-
Paroxysmal hemidystonia induced by prolonged exercise and cold.
J Neurol Neurosurg Psychiatry. 1992 Mar;55(3):236-7
PMID: 1564494
-
Chromosome-specific microsatellite sets for fluorescence-based, semi-automated genome mapping.
Nat Genet. 1994 Jul;7(3):390-5
PMID: 7920657
-
Paroxysmal dyskinesias: clinical features and classification.
Ann Neurol. 1995 Oct;38(4):571-9
PMID: 7574453
-
A gene for familial paroxysmal dyskinesia (FPD1) maps to chromosome 2q.
Am J Hum Genet. 1996 Jul;59(1):135-9
PMID: 8659517
-
Familial paroxysmal dystonic choreoathetosis revisited.
Mov Disord. 1996 May;11(3):317-20
PMID: 8723150
-
Familial hemiplegic migraine and episodic ataxia type-2 are caused by mutations in the Ca2+ channel gene CACNL1A4.
Cell. 1996 Nov 1;87(3):543-52
PMID: 8898206
-
Paroxysmal dystonic choreoathetosis linked to chromosome 2q: clinical analysis and proposed pathophysiology.
Neurology. 1997 Jul;49(1):177-83
PMID: 9222187
-
Familial infantile convulsions and paroxysmal choreoathetosis: a new neurological syndrome linked to the pericentromeric region of human chromosome 16.
Am J Hum Genet. 1997 Oct;61(4):889-98
PMID: 9382100
-
Gene locus FPD1 of the dystonic Mount-Reback type of autosomal-dominant paroxysmal choreoathetosis.
Neurology. 1997 Nov;49(5):1252-7
PMID: 9371903
-
Paroxysmal exercise-induced dystonia: eight new sporadic cases and a review of the literature.
Mov Disord. 1997 Nov;12(6):1007-12
PMID: 9399228
-
Paroxysmal dystonic choreoathetosis. Genetic linkage studies in a British family.
Brain. 1997 Dec;120 ( Pt 12):2125-30
PMID: 9448567
-
Changes in perfusion pattern using ECD-SPECT indicate frontal lobe and cerebellar involvement in exercise-induced paroxysmal dystonia.
Mov Disord. 1998 Jan;13(1):125-34
PMID: 9452337
-
Exercise induced steroid dependent dystonia, ataxia, and alternating hemiplegia associated with epilepsy.
J Neurol Neurosurg Psychiatry. 1998 Aug;65(2):241-4
PMID: 9703179
-
Association of infantile convulsions with paroxysmal dyskinesias (ICCA syndrome): confirmation of linkage to human chromosome 16p12-q12 in a Chinese family.
Hum Genet. 1998 Nov;103(5):608-12
PMID: 9860304
-
Autosomal recessive rolandic epilepsy with paroxysmal exercise-induced dystonia and writer's cramp: delineation of the syndrome and gene mapping to chromosome 16p12-11.2.
Ann Neurol. 1999 Mar;45(3):344-52
PMID: 10072049
-
Familial paroxysmal dystonic choreoathetosis and its differentiation from related syndromes.
Ann Neurol. 1977 Oct;2(4):285-93
PMID: 617268