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SHANK1 and autism spectrum disorders

机译:SHANK1和自闭症谱系障碍

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Autism spectrum disorders (ASD) are highly heterogeneous pediatric developmental disorders with estimated heritability more than 70%. Although the genetic factors in ASD are mainly unknown, a large number of gene mutations have been found, especially in genes involved in neurogenesis. The Neurexin-Neuroligin-Shank (NRXN-NLGN-SHANK) pathway plays a key role in the formation, maturation and maintenance of synapses, consistent with the hypothesis of neurodevelopmental abnormality in ASD. Presynaptic NRXNs interact with postsynaptic NLGNs in excitatory glutamatergic synapses. SHANK proteins function as core components of the postsynaptic density (PSD) by interacting with multiple proteins. Recently, deletions and point mutations of the SHANK1 gene have been detected in ASD individuals, indicating the involvement of SHANK1 in ASD. This review focuses on the function of SHANK1 protein, Shank1 mouse models, and the molecular genetics of the SHANK1 gene in human ASD. Keywords autism spectrum disorders SHANK1 synapse genetics mouse model.
机译:自闭症谱系障碍(ASD)是高度异质的小儿发育障碍,估计遗传力超过70%。尽管ASD中的遗传因素主要是未知的,但已经发现了大量的基因突变,尤其是在涉及神经发生的基因中。神经氨酸-神经元-Shank(NRXN-NLGN-SHANK)通路在突触的形成,成熟和维持中起着关键作用,这与ASD中神经发育异常的假设一致。突触前NRXNs在兴奋性谷氨酸能突触中与突触后NLGN相互作用。 SHANK蛋白通过与多种蛋白相互作用,充当突触后密度(PSD)的核心成分。最近,在ASD个体中检测到SHANK1基因的缺失和点突变,表明SHANK1参与了ASD。这篇综述着重于SHANK1蛋白的功能,Shank1小鼠模型以及人类ASD中SHANK1基因的分子遗传学。关键词自闭症谱系障碍SHANK1突触遗传学小鼠模型。

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