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Toward a Broader View of Ube3a in a Mouse Model of Angelman Syndrome: Expression in Brain Spinal Cord Sciatic Nerve and Glial Cells

机译:在天使模型的小鼠模型中对Ube3a进行更广泛的研究:在脑脊髓坐骨神经和神经胶质细胞中的表达

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摘要

Angelman Syndrome (AS) is a devastating neurodevelopmental disorder characterized by developmental delay, speech impairment, movement disorder, sleep disorders and refractory epilepsy. AS is caused by loss of the Ube3a protein encoded for by the imprinted Ube3a gene. Ube3a is expressed nearly exclusively from the maternal chromosome in mature neurons. While imprinting in neurons of the brain has been well described, the imprinting and expression of Ube3a in other neural tissues remains relatively unexplored. Moreover, given the overwhelming deficits in brain function in AS patients, the possibility of disrupted Ube3a expression in the infratentorial nervous system and its consequent disability have been largely ignored. We evaluated the imprinting status of Ube3a in the spinal cord and sciatic nerve and show that it is also imprinted in these neural tissues. Furthermore, a growing body of clinical and radiological evidence has suggested that myelin dysfunction may contribute to morbidity in many neurodevelopmental syndromes. However, findings regarding Ube3a expression in non-neuronal cells of the brain have varied. Utilizing enriched primary cultures of oligodendrocytes and astrocytes, we show that Ube3a is expressed, but not imprinted in these cell types. Unlike many other neurodevelopmental disorders, AS symptoms do not become apparent until roughly 6 to 12 months of age. To determine the temporal expression pattern and silencing, we analyzed Ube3a expression in AS mice at several time points. We confirm relaxed imprinting of Ube3a in neurons of the postnatal developing cortex, but not in structures in which neurogenesis and migration are more complete. This furthers the hypothesis that the apparently normal window of development in AS patients is supported by an incompletely silenced paternal allele in developing neurons, resulting in a relative preservation of Ube3a expression during this crucial epoch of early development.
机译:安格曼综合症(AS)是一种破坏性神经发育障碍,其特征在于发育延迟,语言障碍,运动障碍,睡眠障碍和难治性癫痫。 AS是由印迹的Ube3a基因编码的Ube3a蛋白丢失引起的。 Ube3a几乎仅从成熟神经元的母体染色体表达。虽然已经很好地描述了在大脑神经元中的印记,但是在其他神经组织中Ube3a的印记和表达仍然相对未开发。此外,考虑到AS患者大脑功能的严重缺陷,在下腹神经系统中破坏Ube3a表达的可能性及其随之而来的残疾已被大大忽略。我们评估了Ube3a在脊髓和坐骨神经中的印迹状态,并显示了它在这些神经组织中的印迹。此外,越来越多的临床和放射学证据表明,髓鞘功能障碍可能导致许多神经发育综合征的发病。但是,关于Ube3a在大脑非神经元细胞中表达的发现有所不同。利用少突胶质细胞和星形胶质细胞的丰富的原代培养,我们显示了Ube3a表达,但没有印记在这些细胞类型中。与许多其他神经发育障碍不同,AS症状要到大约6到12个月大时才变得明显。为了确定时间表达模式和沉默,我们在几个时间点分析了AS小鼠中Ube3a的表达。我们证实了在出生后发育皮质的神经元中Ube3a的轻松印迹,但在神经发生和迁移更为完整的结构中却没有。这进一步提出了这样的假说:发育中的神经元中不完全沉默的父本等位基因支持了AS患者看似正常的发育窗口,从而在早期发育的这一关键时期导致了Ube3a表达的相对保存。

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