首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Adult Ube3a Gene Reinstatement Restores the Electrophysiological Deficits of Prefrontal Cortex Layer 5 Neurons in a Mouse Model of Angelman Syndrome
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Adult Ube3a Gene Reinstatement Restores the Electrophysiological Deficits of Prefrontal Cortex Layer 5 Neurons in a Mouse Model of Angelman Syndrome

机译:成人UBE3A基因恢复恢复前额叶皮质层5神经元的电生理学缺陷在委社会综合征的小鼠模型中

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摘要

E3 ubiquitin ligase (UBE3A) levels in the brain need to be tightly regulated, as loss of functional UBE3A protein is responsible for the severe neurodevelopmental disorder Angelman syndrome (AS), whereas increased activity of UBE3A is associated with nonsyndromic autism. Given the role of mPFC in neurodevelopmental disorders including autism, we aimed to identify the functional changes resulting from loss of UBE3A in infralimbic and prelimbic mPFC areas in a mouse model of AS. Whole-cell recordings from layer 5 mPFC pyramidal neurons obtained in brain slices from adult mice of both sexes revealed that loss of UBE3A results in a strong decrease of spontaneous inhibitory transmission and increase of spontaneous excitatory transmission potentially leading to a marked excitation/inhibition imbalance. Additionally, we found that loss of UBE3A led to decreased excitability and increased threshold for action potential of layer 5 fast spiking interneurons without significantly affecting the excitability of pyramidal neurons. Because we previously showed that AS mouse behavioral phenotypes are reversible upon Ube3a gene reactivation during a restricted period of early postnatal development, we investigated whether Ube3a gene reactivation in a fully mature brain could reverse any of the identified physiological deficits. In contrast to our previously reported behavioral findings, restoring UBE3A levels in adult animals fully rescued all the identified physiological deficits of mPFC neurons. Moreover, the kinetics of reversing these synaptic deficits closely followed the reinstatement of UBE3A protein level. Together, these findings show a striking dissociation between the rescue of behavioral and physiological deficits.
机译:E3泛素连接酶(UBE3A)大脑中的水平需要紧密调节,因为功能性UBE3A蛋白的损失是严重的神经发育障碍术语综合征(AS)的原因,而UBE3A的增加的活性与非合成症患者有关。鉴于MPFC在包括自闭症的神经发育障碍中的作用,我们旨在确定由于鼠标模型中的InfraMBIC和PRELIMBIC MPFC区域中的UBE3A丧失而导致的功能变化。来自两性成年小鼠的脑切片中获得的第5层MPFC金字塔神经元的全部细胞记录揭示了UBE3a的损失导致自发抑制速度的强烈降低,并且可能导致显着的激发/抑制不平衡的自发兴奋传播的增加。此外,我们发现UBE3A的损失导致兴奋性降低和第5层快速尖峰间的动作电位增加的阈值,而不会显着影响金字塔神经元的兴奋性。由于我们之前表明,随着鼠标行为表型在局限性发育早期发育的狭窄期间ube3a基因重新激活时,我们研究了UBE3A基因再激活是否在完全成熟的大脑中可以逆转任何已识别的生理缺陷。与先前报告的行为结果相比,恢复成人动物中的UBE3A水平完全救出了MPFC神经元的所有已识别的生理缺陷。此外,逆转这些突触缺陷的动力学紧密遵循ube3a蛋白质水平的恢复。在一起,这些调查结果表明,行为和生理缺陷之间的救援之间存在惊人的解剖。

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