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Browsing by Author "Rakovic, Aleksandar (14024699100)"

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    Publication
    Whispering dysphonia (DYT4 dystonia) is caused by a mutation in the TUBB4 gene
    (2013)
    Lohmann, Katja (24067483500)
    ;
    Wilcox, Robert A. (7202527027)
    ;
    Winkler, Susen (8945753300)
    ;
    Ramirez, Alfredo (55118463400)
    ;
    Rakovic, Aleksandar (14024699100)
    ;
    Park, Jin-Sung (47461673900)
    ;
    Arns, Björn (54917185800)
    ;
    Lohnau, Thora (8945753200)
    ;
    Groen, Justus (7103413430)
    ;
    Kasten, Meike (7003306426)
    ;
    Brüggemann, Norbert (6602510318)
    ;
    Hagenah, Johann (6701387839)
    ;
    Schmidt, Alexander (57204110254)
    ;
    Kaiser, Frank J. (7102610700)
    ;
    Kumar, Kishore R. (56612680200)
    ;
    Zschiedrich, Katja (36124425600)
    ;
    Alvarez-Fischer, Daniel (25227319100)
    ;
    Altenmüller, Eckart (7004079354)
    ;
    Ferbert, Andreas (7005694339)
    ;
    Lang, Anthony E. (36042140400)
    ;
    Münchau, Alexander (55230575800)
    ;
    Kostic, Vladimir (57189017751)
    ;
    Simonyan, Kristina (6603267015)
    ;
    Agzarian, Marc (13005104600)
    ;
    Ozelius, Laurie J. (7006776470)
    ;
    Langeveld, Antonius P.M. (6602683283)
    ;
    Sue, Carolyn M. (7006682075)
    ;
    Tijssen, Marina A.J. (7004162353)
    ;
    Klein, Christine (26642933500)
    Objective: A study was undertaken to identify the gene underlying DYT4 dystonia, a dominantly inherited form of spasmodic dysphonia combined with other focal or generalized dystonia and a characteristic facies and body habitus, in an Australian family. Methods: Genome-wide linkage analysis was carried out in 14 family members followed by genome sequencing in 2 individuals. The index patient underwent a detailed neurological follow-up examination, including electrophysiological studies and magnetic resonance imaging scanning. Biopsies of the skin and olfactory mucosa were obtained, and expression levels of TUBB4 mRNA were determined by quantitative real-time polymerase chain reaction in 3 different cell types. All exons of TUBB4 were screened for mutations in 394 unrelated dystonia patients. Results: The disease-causing gene was mapped to a 23cM region on chromosome 19p13.3-p13.2 with a maximum multipoint LOD score of 5.338 at markers D9S427 and D9S1034. Genome sequencing revealed a missense variant in the TUBB4 (tubulin beta-4; Arg2Gly) gene as the likely cause of disease. Sequencing of TUBB4 in 394 unrelated dystonia patients revealed another missense variant (Ala271Thr) in a familial case of segmental dystonia with spasmodic dysphonia. mRNA expression studies demonstrated significantly reduced levels of mutant TUBB4 mRNA in different cell types from a heterozygous Arg2Gly mutation carrier compared to controls. Interpretation: A mutation in TUBB4 causes DYT4 dystonia in this Australian family with so-called whispering dysphonia, and other mutations in TUBB4 may contribute to spasmodic dysphonia. Given that TUBB4 is a neuronally expressed tubulin, our results imply abnormal microtubule function as a novel mechanism in the pathophysiology of dystonia. © 2013 American Neurological Association.
  • Loading...
    Thumbnail Image
    Some of the metrics are blocked by your 
    consent settings
    Publication
    Whispering dysphonia (DYT4 dystonia) is caused by a mutation in the TUBB4 gene
    (2013)
    Lohmann, Katja (24067483500)
    ;
    Wilcox, Robert A. (7202527027)
    ;
    Winkler, Susen (8945753300)
    ;
    Ramirez, Alfredo (55118463400)
    ;
    Rakovic, Aleksandar (14024699100)
    ;
    Park, Jin-Sung (47461673900)
    ;
    Arns, Björn (54917185800)
    ;
    Lohnau, Thora (8945753200)
    ;
    Groen, Justus (7103413430)
    ;
    Kasten, Meike (7003306426)
    ;
    Brüggemann, Norbert (6602510318)
    ;
    Hagenah, Johann (6701387839)
    ;
    Schmidt, Alexander (57204110254)
    ;
    Kaiser, Frank J. (7102610700)
    ;
    Kumar, Kishore R. (56612680200)
    ;
    Zschiedrich, Katja (36124425600)
    ;
    Alvarez-Fischer, Daniel (25227319100)
    ;
    Altenmüller, Eckart (7004079354)
    ;
    Ferbert, Andreas (7005694339)
    ;
    Lang, Anthony E. (36042140400)
    ;
    Münchau, Alexander (55230575800)
    ;
    Kostic, Vladimir (57189017751)
    ;
    Simonyan, Kristina (6603267015)
    ;
    Agzarian, Marc (13005104600)
    ;
    Ozelius, Laurie J. (7006776470)
    ;
    Langeveld, Antonius P.M. (6602683283)
    ;
    Sue, Carolyn M. (7006682075)
    ;
    Tijssen, Marina A.J. (7004162353)
    ;
    Klein, Christine (26642933500)
    Objective: A study was undertaken to identify the gene underlying DYT4 dystonia, a dominantly inherited form of spasmodic dysphonia combined with other focal or generalized dystonia and a characteristic facies and body habitus, in an Australian family. Methods: Genome-wide linkage analysis was carried out in 14 family members followed by genome sequencing in 2 individuals. The index patient underwent a detailed neurological follow-up examination, including electrophysiological studies and magnetic resonance imaging scanning. Biopsies of the skin and olfactory mucosa were obtained, and expression levels of TUBB4 mRNA were determined by quantitative real-time polymerase chain reaction in 3 different cell types. All exons of TUBB4 were screened for mutations in 394 unrelated dystonia patients. Results: The disease-causing gene was mapped to a 23cM region on chromosome 19p13.3-p13.2 with a maximum multipoint LOD score of 5.338 at markers D9S427 and D9S1034. Genome sequencing revealed a missense variant in the TUBB4 (tubulin beta-4; Arg2Gly) gene as the likely cause of disease. Sequencing of TUBB4 in 394 unrelated dystonia patients revealed another missense variant (Ala271Thr) in a familial case of segmental dystonia with spasmodic dysphonia. mRNA expression studies demonstrated significantly reduced levels of mutant TUBB4 mRNA in different cell types from a heterozygous Arg2Gly mutation carrier compared to controls. Interpretation: A mutation in TUBB4 causes DYT4 dystonia in this Australian family with so-called whispering dysphonia, and other mutations in TUBB4 may contribute to spasmodic dysphonia. Given that TUBB4 is a neuronally expressed tubulin, our results imply abnormal microtubule function as a novel mechanism in the pathophysiology of dystonia. © 2013 American Neurological Association.

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