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1.
Transl Psychiatry ; 3: e338, 2013 Dec 17.
Article in English | MEDLINE | ID: mdl-24346136

ABSTRACT

Adolescence is a period of heightened susceptibility to psychiatric disorders of medial prefrontal cortex (mPFC) dysfunction and cognitive impairment. mPFC dopamine (DA) projections reach maturity only in early adulthood, when their control over cognition becomes fully functional. The mechanisms governing this protracted and unique development are unknown. Here we identify dcc as the first DA neuron gene to regulate mPFC connectivity during adolescence and dissect the mechanisms involved. Reduction or loss of dcc from DA neurons by Cre-lox recombination increased mPFC DA innervation. Underlying this was the presence of ectopic DA fibers that normally innervate non-cortical targets. Altered DA input changed the anatomy and electrophysiology of mPFC circuits, leading to enhanced cognitive flexibility. All phenotypes only emerged in adulthood. Using viral Cre, we demonstrated that dcc organizes mPFC wiring specifically during adolescence. Variations in DCC may determine differential predisposition to mPFC disorders in humans. Indeed, DCC expression is elevated in brains of antidepressant-free subjects who committed suicide.


Subject(s)
Dopaminergic Neurons/metabolism , Genes, DCC/physiology , Mental Disorders/genetics , Prefrontal Cortex/growth & development , Adolescent , Adolescent Development/physiology , Animals , Case-Control Studies , Genetic Predisposition to Disease , Haploinsufficiency , Humans , Male , Mice , Neural Pathways/growth & development , Neural Pathways/metabolism , Prefrontal Cortex/cytology , Prefrontal Cortex/metabolism , Self-Injurious Behavior/genetics , Suicide
2.
Mol Psychiatry ; 16(4): 442-51, 2011 Apr.
Article in English | MEDLINE | ID: mdl-20308993

ABSTRACT

Recent studies have shown that more than 10% of autism cases are caused by de novo structural genomic rearrangements. Given that some heritable copy number variants (CNVs) have been observed in patients as well as in healthy controls, to date little attention has been paid to the potential function of these non-de novo CNVs in causing autism. A normally intelligent patient with autism, with non-affected parents, was identified with a maternally inherited 10 Mb deletion at 13q21.2. Sequencing of the genes within the deletion identified a paternally inherited nonsynonymous amino-acid substitution at position 614 of diaphanous homolog 3 (DIAPH3) (proline to threonine; Pro614Thr). This variant, present in a highly conserved domain, was not found in 328 healthy subjects. Experiments showed a transient expression of Diaph3 in the developing murine cerebral cortex, indicating it has a function in brain development. Transfection of Pro614Thr in murine fibroblasts showed a significant reduction in the number of induced filopodia in comparison to the wild-type gene. DIAPH3 is involved in cell migration, axon guidance and neuritogenesis, and is suggested to function downstream of SHANK3. Our findings strongly suggest DIAPH3 as a novel autism susceptibility gene. Moreover, this report of a 'double-hit' compound heterozygote for a large, maternally inherited, genomic deletion and a paternally inherited rare missense mutation shows that not only de novo genomic variants in patients should be taken seriously in further study but that inherited CNVs may also provide valuable information.


Subject(s)
Adaptor Proteins, Signal Transducing/genetics , Autistic Disorder/genetics , Genetic Predisposition to Disease/genetics , Polymorphism, Single Nucleotide/genetics , Adolescent , Animals , Animals, Newborn , Autistic Disorder/complications , Autistic Disorder/etiology , Brain/growth & development , Brain/metabolism , Brain/pathology , Cell Line, Transformed , Cognition Disorders/etiology , Cognition Disorders/genetics , Family Health , Formins , Genome-Wide Association Study , Genotype , Humans , Male , Mice , Transfection/methods
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