Literature DB >> 22815559

Myoclonus-dystonia syndrome due to tyrosine hydroxylase deficiency.

Maria Stamelou1, Niccolo E Mencacci, Carla Cordivari, Amit Batla, Nick W Wood, Henry Houlden, John Hardy, Kailash P Bhatia.   

Abstract

OBJECTIVE: To present a new family with tyrosine hydroxylase deficiency (THD) that presented with a new phenotype of predominant, levodopa-responsive myoclonus with dystonia due to compound heterozygosity of one previously reported mutation in the promoter region and a novel nonsynonymous mutation in the other allele, thus expanding the clinical and genetic spectrum of this disorder.
METHODS: We performed detailed clinical examination of the family and electrophysiology to characterize the myoclonus. We performed analysis of the TH gene and in silico prediction of the possible effect of nonsynonymous substitutions on protein structure.
RESULTS: Electrophysiology suggested that the myoclonus was of subcortical origin. Genetic analysis of the TH gene revealed compound heterozygosity of a point mutation in the promoter region (c.1-71 C>T) and a novel nonsynonymous substitution in exon 12 (c.1282G>A, p.Gly428Arg). The latter is a novel variant, predicted to have a deleterious effect on the TH protein function and is the first pathogenic TH mutation in patients of African ancestry.
CONCLUSION: We presented a THD family with predominant myoclonus-dystonia and a new genotype. It is important to consider THD in the differential diagnosis of myoclonus-dystonia, because early treatment with levodopa is crucial for these patients.

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Year:  2012        PMID: 22815559      PMCID: PMC3405253          DOI: 10.1212/WNL.0b013e318261714a

Source DB:  PubMed          Journal:  Neurology        ISSN: 0028-3878            Impact factor:   9.910


  40 in total

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2.  A homozygous tyrosine hydroxylase gene promoter mutation in a patient with dopa-responsive encephalopathy: clinical, biochemical and genetic analysis.

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3.  Tyrosine hydroxylase gene promoter activity is regulated by both cyclic AMP-responsive element and AP1 sites following calcium influx. Evidence for cyclic amp-responsive element binding protein-independent regulation.

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4.  Biochemical and molecular genetic characteristics of the severe form of tyrosine hydroxylase deficiency.

Authors:  C Bräutigam; G C Steenbergen-Spanjers; G F Hoffmann; C Dionisi-Vici; L P van den Heuvel; J A Smeitink; R A Wevers
Journal:  Clin Chem       Date:  1999-12       Impact factor: 8.327

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7.  Myoclonus-dystonia, obsessive-compulsive disorder, and alcohol dependence in SGCE mutation carriers.

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8.  L-DOPA is converted to dopamine in serotonergic fibers of the striatum of the rat: a double-labeling immunofluorescence study.

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9.  The cyclic AMP response element directs tyrosine hydroxylase expression in catecholaminergic central and peripheral nervous system cell lines from transgenic mice.

Authors:  M Lazaroff; S Patankar; S O Yoon; D M Chikaraishi
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10.  Mutations in the cyclic adenosine monophosphate response element of the tyrosine hydroxylase gene.

Authors:  Marcel M Verbeek; Gerry C H Steenbergen-Spanjers; Michèl A A P Willemsen; Frans A Hol; Jan Smeitink; Jürgen Seeger; Padraic Grattan-Smith; Monique M Ryan; Georg F Hoffmann; Maria A Donati; Nenad Blau; Ronald A Wevers
Journal:  Ann Neurol       Date:  2007-10       Impact factor: 10.422

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4.  Functional studies of tyrosine hydroxylase missense variants reveal distinct patterns of molecular defects in Dopa-responsive dystonia.

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