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首页> 外文期刊>Neurobiology of disease >Haploinsufficiency of the autism candidate gene Neurobeachin induces autism-like behaviors and affects cellular and molecular processes of synaptic plasticity in mice
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Haploinsufficiency of the autism candidate gene Neurobeachin induces autism-like behaviors and affects cellular and molecular processes of synaptic plasticity in mice

机译:自闭症候选基因Neurobeachin的单倍剂量不足会诱导自闭症样行为并影响小鼠突触可塑性的细胞和分子过程

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Neurobeachin (NBEA), a brain-enriched multidomain scaffolding protein involved in neurotransmitter release and synaptic functioning, has been identified as a candidate gene for autism spectrum disorder (ASD) in four unrelated patients haploinsufficient for NBEA. The aim of this study was to map the behavioral phenotype of Nbea+/- mice in order to understand its contribution to the pathogenesis of ASD. ASD-like behavioral variables of Nbea+/- mice were related to basal neuronal activity in different brain regions by in situ hybridizations and extracellular field recordings of synaptic plasticity in hippocampal cornu ammonis 1 (CA1) region. Levels of BDNF and phosphorylated cAMP response element-binding protein (CREB) were measured in an attempt to investigate putatively underlying changes in these neuromolecules. Nbea+/- mice exhibit several ASD-like features, including changes in self-grooming behavior, social behaviors, conditioned fear responses, and spatial learning and memory, which coincided with enhanced long-term potentiation (LTP) in their CA1 region. The observed alterations in learning and memory and hippocampal LTP are concomitant with decreased expression of the immediate early gene zif268 in dorsomedial striatum and hippocampal CA1 region, increased CREB phosphorylation, and increased hippocampal BDNF expression. These findings indicate that Nbea haploinsufficiency leads to various molecular and cellular changes that affect neuroplasticity and behavioral functions in mice, and could thus underlie the ASD symptomatology in NBEA deficient humans.
机译:Neurobeachin(NBEA)是一种参与神经递质释放和突触功能的大脑富集的多域支架蛋白,已被确定为四名与NBEA单倍不足的无关患者的自闭症谱系障碍(ASD)候选基因。这项研究的目的是绘制Nbea +/-小鼠的行为表型,以了解其对ASD发病机制的贡献。 Nbea +/-小鼠的ASD样行为变量通过原位杂交和海马角膜氨化1(CA1)区域突触可塑性的细胞外场记录与不同脑区的基础神经元活动相关。测量BDNF和磷酸化的cAMP反应元件结合蛋白(CREB)的水平,试图研究这些神经分子中潜在的潜在变化。 Nbea +/-小鼠表现出几种类似于ASD的特征,包括自我修饰行为,社交行为,条件性恐惧反应以及空间学习和记忆的变化,这与其CA1区域增强的长期增强(LTP)相吻合。观察到的学习和记忆变化以及海马LTP伴随着背侧纹状体和海马CA1区立即早期基因zif268的表达减少,CREB磷酸化增加和海马BDNF表达增加。这些发现表明,Nbea单倍体不足会导致各种分子和细胞变化,从而影响小鼠的神经可塑性和行为功能,因此可能成为NBEA缺陷型人类ASD症状的基础。

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