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Synaptic dysfunction and abnormal behaviors in mice lacking major isoforms of Shank3

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TLDR
It is concluded that loss of major Shank3 species produces biochemical, cellular and morphological changes, leading to behavioral abnormalities in mice that bear similarities to human ASD patients with SHANK3 mutations.
Abstract
SHANK3 is a synaptic scaffolding protein enriched in the postsynaptic density (PSD) of excitatory synapses. Small microdeletions and point mutations in SHANK3 have been identified in a small subgroup of individuals with autism spectrum disorder (ASD) and intellectual disability. SHANK3 also plays a key role in the chromosome 22q13.3 microdeletion syndrome (Phelan-McDermid syndrome), which includes ASD and cognitive dysfunction as major clinical features. To evaluate the role of Shank3 in vivo, we disrupted major isoforms of the gene in mice by deleting exons 4-9. Isoform-specific Shank3(e4-9) homozygous mutant mice display abnormal social behaviors, communication patterns, repetitive behaviors and learning and memory. Shank3(e4-9) male mice display more severe impairments than females in motor coordination. Shank3(e4-9) mice have reduced levels of Homer1b/c, GKAP and GluA1 at the PSD, and show attenuated activity-dependent redistribution of GluA1-containing AMPA receptors. Subtle morphological alterations in dendritic spines are also observed. Although synaptic transmission is normal in CA1 hippocampus, long-term potentiation is deficient in Shank3(e4-9) mice. We conclude that loss of major Shank3 species produces biochemical, cellular and morphological changes, leading to behavioral abnormalities in mice that bear similarities to human ASD patients with SHANK3 mutations.

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Journal ArticleDOI

Phelan–McDermid Syndrome and SHANK3: Implications for Treatment

TL;DR: The cause of PMS has been isolated to loss of function of one copy of SHANK3, which codes for a master scaffolding protein found in the postsynaptic density of excitatory synapses, which leads to reduced numbers of dendrites, and impaired synaptic transmission and plasticity.
Journal ArticleDOI

A Subset of Autism-Associated Genes Regulate the Structural Stability of Neurons

TL;DR: The current understanding of those autism risk genes that affect the structural connectivity of neurons is discussed, and whether and how the neuronal structure and function are affected when these genes are mutated will provide insights toward developing effective interventions aimed at improving the lives of people with autism and their families.
Journal ArticleDOI

Prospects for the development of epigenetic drugs for CNS conditions

TL;DR: The complexity of epigenetic processes and the current level of proof for their involvement in CNS disorders are discussed and strategies to address these challenges through the development of improved evidence-based epigenetic therapeutics and through combining pharmacological and behavioural approaches are presented.
Journal ArticleDOI

Brain region-specific disruption of Shank3 in mice reveals a dissociation for cortical and striatal circuits in autism-related behaviors

TL;DR: A dissociation of Shank3 functions in cortical and striatal neurons in ASD-related behaviors is supported, and it illustrates the complexity of neural circuit mechanisms underlying these behaviors.
Journal ArticleDOI

Deletion of α-neurexin II results in autism-related behaviors in mice.

TL;DR: A causal role for the loss of Nrxn2α in the genesis of autism-related behaviors in mice is demonstrated and is demonstrated to be related to the symptoms of autism.
References
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Journal ArticleDOI

Diagnostic and Statistical Manual of Mental Disorders

TL;DR: An issue concerning the criteria for tic disorders is highlighted, and how this might affect classification of dyskinesias in psychotic spectrum disorders.
Journal ArticleDOI

Optimized survival of hippocampal neurons in B27-supplemented Neurobasal, a new serum-free medium combination

TL;DR: High survival was achieved with osmolarity lower than found in Dulbecco's Modified Eagle's Medium (DMEM), and by reducing cysteine and glutamine concentrations and by the elimination of toxic ferrnous sulphate found in DME/F12, and Neurobasal is a new medium that incorporates modifications to DMEM.
Journal ArticleDOI

Functional impact of global rare copy number variation in autism spectrum disorders

Dalila Pinto, +181 more
- 15 Jul 2010 - 
TL;DR: The genome-wide characteristics of rare (<1% frequency) copy number variation in ASD are analysed using dense genotyping arrays to reveal many new genetic and functional targets in ASD that may lead to final connected pathways.
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