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A new synaptic player leading to autism risk: Met receptor tyrosine kinase

机译:导致自闭症风险的新型突触参与者:Met受体酪氨酸激酶

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The validity for assigning disorder risk to an autism spectrum disorder (ASD) candidate gene comes from convergent genetic, clinical, and developmental neurobiology data. Here, we review these lines of evidence from multiple human genetic studies, and non-human primate and mouse experiments that support the conclusion that the MET receptor tyrosine kinase (RTK) functions to influence synapse development in circuits relevant to certain core behavioral domains of ASD. There is association of both common functional alleles and rare copy number variants that impact levels of MET expression in the human cortex. The timing of Met expression is linked to axon terminal outgrowth and synaptogenesis in the developing rodent and primate forebrain, and both in vitro and in vivo studies implicate this RTK in dendritic branching, spine maturation, and excitatory connectivity in the neocortex. This impact can occur in a cell-nonautonomous fashion, emphasizing the unique role that Met plays in specific circuits relevant to ASD.Keywords: Autism spectrum disorder, Synaptogenesis, Forebrain, Hepatocyte growth factor, Human genetics
机译:将自闭症谱系障碍(ASD)候选基因分配给疾病风险的有效性来自于遗传,临床和发育神经生物学的聚合数据。在这里,我们回顾了来自多个人类遗传研究以及非人类灵长类和小鼠实验的证据,这些证据支持以下结论:MET受体酪氨酸激酶(RTK)的作用是影响与ASD某些核心行为域相关的电路中的突触发育。普通功能性等位基因和稀有拷贝数变异都存在关联,这些变异会影响人类皮层中MET表达的水平。 Met表达的时间与发育中的啮齿动物和灵长类前脑中轴突末端的生长和突触发生有关,并且体外和体内研究都将这种RTK牵连到新皮层的树突分支,脊柱成熟和兴奋性连接中。这种影响可以以细胞非自治的方式发生,强调了Met在与ASD相关的特定电路中所起的独特作用。关键词:自闭症谱系障碍,突触形成,前脑,肝细胞生长因子,人类遗传学

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