Association of Mouse Dlg4 (PSD-95) Gene Deletion and Human DLG4 Gene Variation With Phenotypes Relevant to Autism Spectrum Disorders and Williams' Syndrome

被引:182
作者
Feyder, Michael [1 ]
Karlsson, Rose-Marie
Mathur, Poonam
Lyman, Matthew
Bock, Roland
Momenan, Reza
Munasinghe, Jeeva
Scattoni, Maria Luisa
Ihne, Jessica
Camp, Marguerite
Graybeal, Carolyn
Strathdee, Douglas
Begg, Alison
Alvarez, Veronica A.
Kirsch, Peter
Rietschel, Marcella
Cichon, Sven
Walter, Henrik
Meyer-Lindenberg, Andreas
Grant, Seth G. N.
Holmes, Andrew
机构
[1] NIAAA, Sect Behav Sci & Genet, Lab Integrat Neurosci, Rockville, MD 20852 USA
基金
英国惠康基金;
关键词
BEHAVIORAL PHENOTYPES; SYNAPTIC-TRANSMISSION; NEURAL MECHANISMS; DENDRITIC SPINES; FRAGILE-X; MODEL; MICE; PLASTICITY; MUTATIONS; RECEPTOR;
D O I
10.1176/appi.ajp.2010.10040484
中图分类号
R749 [精神病学];
学科分类号
100205 ;
摘要
Objective: Research is increasingly linking autism spectrum disorders and other neurodevelopmental disorders to synaptic abnormalities ("synaptopathies"). PSD-95 (postsynaptic density-95, DLG4) orchestrates protein-protein interactions at excitatory synapses and is a major functional bridge interconnecting a neurexin-neuroligin-SHANK pathway implicated in autism spectrum disorders. Method: The authors characterized behavioral, dendritic, and molecular phenotypic abnormalities relevant to autism spectrum disorders in mice with PSD-95 deletion (Dlg4(-/-)). The data from mice led to the identification of single-nucleotide polymorphisms (SNPs) in human DLG4 and the examination of associations between these variants and neural signatures of Williams' syndrome in a normal population, using functional and structural neuroimaging. Results: Dlg4(-/-) showed increased repetitive behaviors, abnormal communication and social behaviors, impaired motor coordination, and increased stress reactivity and anxiety-related responses. Dlg4(-/-) had subtle dysmorphology of amygdala dendritic spines and altered forebrain expression of various synaptic genes, including Cyln2, which regulates cytoskeletal dynamics and is a candidate gene for Williams' syndrome. A significant association was observed between variations in two human DLG4 SNPs and reduced intraparietal sulcus volume and abnormal cortico-amygdala coupling, both of which characterize Williams' syndrome. Conclusions: These findings demonstrate that Dlg4 gene disruption in mice produces a complex range of behavioral and molecular abnormalities relevant to autism spectrum disorders and Williams' syndrome. The study provides an initial link between human DLG4 gene variation and key neural endophenotypes of Williams' syndrome and perhaps cortico-amygdala regulation of emotional and social processes more generally.
引用
收藏
页码:1508 / 1517
页数:10
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