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首页> 外文期刊>Human Molecular Genetics >Inherited and de novo SHANK2 variants associated with autism spectrum disorder impair neuronal morphogenesis and physiology
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Inherited and de novo SHANK2 variants associated with autism spectrum disorder impair neuronal morphogenesis and physiology

机译:与自闭症谱系障碍相关的遗传和从头SHANK2变体损害神经元形态发生和生理

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Mutations in the postsynaptic scaffolding gene SHANK2 have recently been identified in individuals with autism spectrum disorder (ASD) and intellectual disability. However, the cellular and physiological consequences of these mutations in neurons remain unknown. We have analyzed the functional impact caused by two inherited and one de novo SHANK2 mutations from ASD individuals (L1008_P1009dup, T1127M, R462X). Although all three variants affect spine volume and have smaller SHANK2 cluster sizes, T1127M additionally fails to rescue spine volume in Shank2 knock-down neurons. R462X is not able to rescue spine volume and dendritic branching and lacks postsynaptic clustering, indicating the most severe dysfunction. To demonstrate that R462X when expressed in mouse can be linked to physiological effects, we analyzed synaptic transmission and behavior. Principal neurons of mice expressing rAAV-transduced SHANK2-R462X present a specific, long-lasting reduction in miniature postsynaptic AMPA receptor currents. This dominant negative effect translates into dose-dependent altered cognitive behavior of SHANK2-R462X-expressing mice, with an impact on the penetrance of ASD.
机译:最近在患有自闭症谱系障碍(ASD)和智力障碍的个体中发现了突触后支架基因SHANK2的突变。然而,这些突变在神经元中的细胞和生理后果仍然未知。我们分析了由ASD个体(L1008_P1009dup,T1127M,R462X)的两个遗传性和一个新生的SHANK2突变引起的功能影响。尽管所有三个变体都会影响脊柱体积并具有较小的SHANK2簇大小,但T1127M仍无法挽救Shank2敲低神经元的脊柱体积。 R462X无法挽救脊柱体积和树突分支,并且缺乏突触后聚集,表明功能最严重。为了证明R462X在小鼠中表达时可以与生理效应相关,我们分析了突触传递和行为。表达rAAV转导的SHANK2-R462X的小鼠的主要神经元在微型突触后AMPA受体电流中呈现特定的持久性降低。这种显着的负面影响转化为表达SHANK2-R462X的小鼠的剂量依赖性改变的认知行为,对ASD的渗透性有影响。

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