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Tourette Syndrome Risk Genes Regulate Mitochondrial Dynamics, Structure, and Function

Dados Bibliográficos

ID15525550
AutoresRaymond A Clarke (0000-0002-7196-9623, UNSW Sydney, autor correspondente), Teri M Furlong (0000-0002-7603-8334, UNSW Sydney), Valsamma Eapen (0000-0001-6296-8306, Ingham Institute)
Ano2021
Volume11
Páginas556803-556803
Data de publicação2021-03-10
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoFrontiers in Psychiatry (JOURNAL)
Identificadores do periódicoISSN: 1664-0640 • E-ISSN: 1664-0640
EditoraFrontiers Media (PUBLISHER • CH)
DOI10.3389/fpsyt.2020.556803
PMID33776808
OpenAlexW3133753929
IdiomaEN

Gilles de la Tourette syndrome (GTS) is a neurodevelopmental disorder characterized by motor and vocal tics with an estimated prevalence of 1% in children and adolescents. GTS has high rates of inheritance with many rare mutations identified. Apart from the role of the neurexin trans-synaptic connexus (NTSC) little has been confirmed regarding the molecular basis of GTS. The NTSC pathway regulates neuronal circuitry development, synaptic connectivity and neurotransmission. In this study we integrate GTS mutations into mitochondrial pathways that also regulate neuronal circuitry development, synaptic connectivity and neurotransmission. Many deleterious mutations in GTS occur in genes with complementary and consecutive roles in mitochondrial dynamics, structure and function (MDSF) pathways. These genes include those involved in mitochondrial transport ( NDE1, DISC1, OPA1 ), mitochondrial fusion ( OPA1 ), fission ( ADCY2, DGKB, AMPK/PKA, RCAN1, PKC ), mitochondrial metabolic and bio-energetic optimization ( IMMP2L, MPV17, MRPL3, MRPL44 ). This study is the first to develop and describe an integrated mitochondrial pathway in the pathogenesis of GTS. The evidence from this study and our earlier modeling of GTS molecular pathways provides compounding support for a GTS deficit in mitochondrial supply affecting neurotransmission

Biology · DISC1 · Gene · Mitochondrial DNA · mitochondrial fusion · Mitochondrion · Neurexin · Neurotransmission · Postsynaptic potential · Autism Spectrum Disorder Research · Neuroscience · Obsessive-Compulsive Spectrum Disorders · Trypanosoma species research and implications · Genetics

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