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Juvenile Shank3b deficient mice present with behavioral phenotype relevant to autism spectrum disorder

机译:少年Shank3B缺乏与自闭症谱系障碍相关的行为表型的小鼠

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Autism spectrum disorder (ASD) is a pervasive, multifactorial neurodevelopmental disorder diagnosed according to deficits in three behavioral domains: communication, social interaction, and stereotyped/repetitive behaviors. Mutations in Shank genes account for - 1% of clinical ASD cases with Shank3 being the most common gene variant. In addition to maintaining synapses and facilitating dendritic maturation, Shank genes encode master scaffolding proteins that build core complexes in the postsynaptic densities of glutamatergic synapses. Male mice with a deletion of the PDZ domain of Shank3 (Shank3B KO) were previously shown to display ASD-like behavioral phenotypes with reported self-injurious repetitive grooming and aberrant social interactions. Our goal was to extend these previous findings and use a comprehensive battery of highly detailed ASD-relevant behavioral assays including an assessment of mouse ultrasonic communication carried out on key developmental days and male and female Shank3B KO mice. We demonstrate that ASD-related behaviors, atypical reciprocal social interaction and indiscriminate repetitive grooming, are apparent in juvenile stages of development of Shank3B KO mice. Our findings underscore the importance of utilizing Shank mutant models to understand the impact of this gene in ASD etiology, whichmay enable future studies focusing on etiological gene-environment interactions in ASD.
机译:自闭症谱系障碍(ASD)是一种普遍存在的多因素神经发育障碍,根据三个行为域中的缺陷诊断:沟通,社会互动和陈规定型/重复行为。柄基因中的突变占-1%的临床ASD病例,shank3是最常见的基因变体。除了维持突触和促进树枝状成熟的外,柄基因编码母脚手架蛋白质,在谷氨酰胺突触的突触后密度构建核心复合物。前面显示了缺少Shank3(Shank3b Ko)的PDZ结构域的雄性小鼠,以显示诸如报告的自我伤害重复梳理和异常社交相互作用的亚本样行为表型。我们的目标是扩展这些先前的发现,并使用高度详细的ASD相关行为测定的综合电池,包括对关键发育日和男性和雌性Shank3b Ko小鼠进行的小鼠超声波通信进行评估。我们证明,与Shank3B KO小鼠的开发的少年阶段有关的相关行为,非典型互惠社交互动和不分青红皂甙般的散文。我们的研究结果强调了利用柄突变模型来了解本基因在ASD病因中的影响的重要性,该研究能够使未来的研究重点关注ASD的病因基因环境相互作用。

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