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The quaternary structure of human tyrosine hydroxylase: effects of dystonia-associated missense variants on oligomeric state and enzyme activity.
Szigetvari, Peter D; Muruganandam, Gopinath; Kallio, Juha P; Hallin, Erik I; Fossbakk, Agnete; Loris, Remy; Kursula, Inari; Møller, Lisbeth B; Knappskog, Per M; Kursula, Petri; Haavik, Jan.
Afiliação
  • Szigetvari PD; Department of Biomedicine, University of Bergen, Bergen, Norway.
  • Muruganandam G; K.G. Jebsen Centre for Research on Neuropsychiatric Disorders, University of Bergen, Bergen, Norway.
  • Kallio JP; VIB-VUB Center for Structural Biology, Vlaams Instituut voor Biotechnologie, Brussels, Belgium.
  • Hallin EI; Structural Biology Brussels, Department of Bioengineering Sciences, Vrije Universiteit Brussel, Brussels, Belgium.
  • Fossbakk A; Department of Biomedicine, University of Bergen, Bergen, Norway.
  • Loris R; Department of Biomedicine, University of Bergen, Bergen, Norway.
  • Kursula I; K.G. Jebsen Centre for Research on Neuropsychiatric Disorders, University of Bergen, Bergen, Norway.
  • Møller LB; VIB-VUB Center for Structural Biology, Vlaams Instituut voor Biotechnologie, Brussels, Belgium.
  • Knappskog PM; Structural Biology Brussels, Department of Bioengineering Sciences, Vrije Universiteit Brussel, Brussels, Belgium.
  • Kursula P; Department of Biomedicine, University of Bergen, Bergen, Norway.
  • Haavik J; Faculty of Biochemistry and Molecular Medicine, University of Oulu, Oulu, Finland.
J Neurochem ; 148(2): 291-306, 2019 01.
Article em En | MEDLINE | ID: mdl-30411798
Tyrosine hydroxylase (TH) is a multi-domain, homo-oligomeric enzyme that catalyses the rate-limiting step of catecholamine neurotransmitter biosynthesis. Missense variants of human TH are associated with a recessive neurometabolic disease with low levels of brain dopamine and noradrenaline, resulting in a variable clinical picture, from progressive brain encephalopathy to adolescent onset DOPA-responsive dystonia (DRD). We expressed isoform 1 of human TH (hTH1) and its dystonia-associated missense variants in E. coli, analysed their quaternary structure and thermal stability using size-exclusion chromatography, circular dichroism, multi-angle light scattering, transmission electron microscopy, small-angle X-ray scattering and assayed hydroxylase activity. Wild-type (WT) hTH1 was a mixture of enzymatically stable tetramers (85.6%) and octamers (14.4%), with little interconversion between these species. We also observed small amounts of higher order assemblies of long chains of enzyme by transmission electron microscopy. To investigate the role of molecular assemblies in the pathogenesis of DRD, we compared the structure of WT hTH1 with the DRD-associated variants R410P and D467G that are found in vicinity of the predicted subunit interfaces. In contrast to WT hTH1, R410P and D467G were mixtures of tetrameric and dimeric species. Inspection of the available structures revealed that Arg-410 and Asp-467 are important for maintaining the stability and oligomeric structure of TH. Disruption of the normal quaternary enzyme structure by missense variants is a new molecular mechanism that may explain the loss of TH enzymatic activity in DRD. Unstable missense variants could be targets for pharmacological intervention in DRD, aimed to re-establish the normal oligomeric state of TH.
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Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Tirosina 3-Mono-Oxigenase / Distúrbios Distônicos Tipo de estudo: Prognostic_studies / Risk_factors_studies Limite: Humans Idioma: En Revista: J Neurochem Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Noruega

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Tirosina 3-Mono-Oxigenase / Distúrbios Distônicos Tipo de estudo: Prognostic_studies / Risk_factors_studies Limite: Humans Idioma: En Revista: J Neurochem Ano de publicação: 2019 Tipo de documento: Article País de afiliação: Noruega