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Angelman syndrome: advancing the research frontier of neurodevelopmental disorders.

机译:Angelman综合征:促进神经发育障碍的研究前沿。

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This report is a meeting summary of the 2010 Angelman Syndrome Foundation's scientific symposium on the neuroscience of UBE3A. Angelman syndrome is characterized by loss of speech, severe developmental delay, seizures, and ataxia. These core symptoms are caused by maternal allele disruptions of a single gene-UBE3A. UBE3A encodes an E3 ubiquitin ligase that targets certain proteins for proteasomal degradation. This biology has led to the expectation that the identification of Ube3a protein targets will lead to therapies for Angelman syndrome. The recent discovery of Ube3a substrates such as Arc (activity-regulated cytoskeletal protein) provides new insight into the mechanisms underlying the synaptic function and plasticity deficits caused by the loss of Ube3a. In addition to identifying Ube3a substrates, there have also been recent advances in understanding UBE3A's integrated role in the neuronal repertoire of genes and protein interactions. A developmental picture is now emerging whereby UBE3A gene dosage on chromosome 15 alters synaptic function, with deficiencies leading to Angelman syndrome and overexpression associated with classic autism symptomatology.
机译:本报告是2010年安格曼综合症基金会关于UBE3A神经科学的科学研讨会的会议摘要。 Angelman综合征的特征是语言丧失,严重的发育迟缓,癫痫发作和共济失调。这些核心症状是由单个基因UBE3A的母亲等位基因破坏引起的。 UBE3A编码一个E3泛素连接酶,该酶靶向某些蛋白质以进行蛋白酶体降解。这种生物学导致人们期望鉴定Ube3a蛋白靶标将导致Angelman综合征的治疗。 Ube3a底物如Arc(活性调节的细胞骨架蛋白)的最新发现为由Ube3a丢失引起的突触功能和可塑性缺陷的潜在机制提供了新见解。除了识别Ube3a底物外,最近在了解UBE3A在基因和蛋白质相互作用的神经元库中的整合作用方面也有了新进展。现在出现了一种发展图景,据此,第15号染色体上的UBE3A基因剂量改变了突触功能,其缺陷导致Angelman综合征和与典型自闭症症状相关的过表达。

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