Characterization of Dnajc12 knockout mice, a model of hypodopaminergia

Insights

DNAJC12 mutations cause neurological disorders by disrupting biogenic amine synthesis. Mouse models reveal reduced dopamine and serotonin, offering new therapeutic targets for conditions like Parkinson's disease.

Area of Science:

  • Neuroscience
  • Genetics
  • Biochemistry

Background:

  • Pathogenic variants in DNAJC12 are linked to young-onset Parkinson's disease and other neurological conditions like infantile dystonia and intellectual disability.
  • DNAJC12 plays a crucial role in the synthesis of biogenic amines, essential neurotransmitters.
  • Understanding the precise molecular mechanisms of DNAJC12 dysfunction is critical for developing effective therapies.

Purpose of the Study:

  • To elucidate the molecular interactions of DNAJC12 in biogenic amine synthesis.
  • To establish and characterize mouse models for studying DNAJC12-related neurological disorders.
  • To investigate the impact of DNAJC12 loss-of-function on neurotransmitter levels and behavior.

Main Methods:

  • In vitro studies involving overexpression and knockdown of DNAJC12 to assess its complex formation with GCH1, TH, and TPH.
  • Creation and analysis of constitutive Dnajc12 knock-out (DKO) mice using Cre-loxP technology.
  • Behavioral testing (open-field) and biochemical analysis of neurotransmitter levels (DA, 5-HT) and related metabolites in DKO mice.

Main Results:

  • DNAJC12 forms a complex with guanine triphosphate cyclohydrolase 1 (GCH1) and interacts with tyrosine hydroxylase (TH) and tryptophan hydroxylase (TPH).
  • Knockdown of DNAJC12 destabilizes this complex, reducing GCH1 levels, while overexpression of TH and GCH1 upregulates DNAJC12.
  • DKO mice exhibit reduced locomotion, increased plasma phenylalanine, and decreased dopamine and serotonin levels in the striatum, alongside compensatory biochemical changes.

Conclusions:

  • DNAJC12 is essential for maintaining the integrity of the DNAJC12-TH-GCH1 complex, critical for biogenic amine synthesis.
  • DKO mice serve as valuable models for studying DNAJC12-related neurological disorders, including Parkinsonism and dystonia.
  • Modulating the DNAJC12-TH-GCH1 complex presents a potential therapeutic strategy for biogenic amine deficiencies.

Related Concept Videos