Ube3a reinstatement identifies distinct developmental windows in a murine Angelman syndrome model

UBE3A公司 安吉曼综合征 神经发育障碍 等位基因 表型 神经认知 生物 神经科学 医学 泛素连接酶 遗传学 泛素 基因 认知
作者
Sara Silva-Santos,Geeske M. van Woerden,Caroline F. Bruinsma,Edwin Mientjes,Mehrnoush Aghadavoud Jolfaei,Ben Distel,Steven A. Kushner,Ype Elgersma
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:125 (5): 2069-2076 被引量:221
标识
DOI:10.1172/jci80554
摘要

Angelman syndrome (AS) is a severe neurodevelopmental disorder that results from loss of function of the maternal ubiquitin protein ligase E3A (UBE3A) allele. Due to neuron-specific imprinting, the paternal UBE3A copy is silenced. Previous studies in murine models have demonstrated that strategies to activate the paternal Ube3a allele are feasible; however, a recent study showed that pharmacological Ube3a gene reactivation in adulthood failed to rescue the majority of neurocognitive phenotypes in a murine AS model. Here, we performed a systematic study to investigate the possibility that neurocognitive rescue can be achieved by reinstating Ube3a during earlier neurodevelopmental windows. We developed an AS model that allows for temporally controlled Cre-dependent induction of the maternal Ube3a allele and determined that there are distinct neurodevelopmental windows during which Ube3a restoration can rescue AS-relevant phenotypes. Motor deficits were rescued by Ube3a reinstatement in adolescent mice, whereas anxiety, repetitive behavior, and epilepsy were only rescued when Ube3a was reinstated during early development. In contrast, hippocampal synaptic plasticity could be restored at any age. Together, these findings suggest that Ube3a reinstatement early in development may be necessary to prevent or rescue most AS-associated phenotypes and should be considered in future clinical trial design.
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