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Rescue of behavioral and EEG deficits in male and female Mecp2-deficient mice by delayed Mecp2 gene reactivation

机译:通过延迟Mecp2基因重新激活来挽救雄性和雌性Mecp2缺陷小鼠的行为和脑电图缺陷

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摘要

Mutations of the X-linked gene encoding methyl CpG binding protein type 2 (MECP2) are the predominant cause of Rett syndrome, a severe neurodevelopmental condition that affects primarily females. Previous studies have shown that major phenotypic deficits arising from MeCP2-deficiency may be reversible, as the delayed reactivation of the Mecp2 gene in Mecp2-deficient mice improved aspects of their Rett-like phenotype. While encouraging for prospective gene replacement treatments, it remains unclear whether additional Rett syndrome co-morbidities recapitulated in Mecp2-deficient mice will be similarly responsive to the delayed reintroduction of functional Mecp2. Here, we show that the delayed reactivation of Mecp2 in both male and female Mecp2-deficient mice rescues established deficits in motor and anxiety-like behavior, epileptiform activity, cortical and hippocampal electroencephalogram patterning and thermoregulation. These findings indicate that neural circuitry deficits arising from the deficiency in Mecp2 are not engrained, and provide further evidence that delayed restoration of Mecp2 function can improve a wide spectrum of the Rett-like deficits recapitulated by Mecp2-deficient mice.
机译:编码甲基CpG结合蛋白2型(MECP2)的X连锁基因的突变是Rett综合征的主要原因,Rett综合征是一种严重的神经发育疾病,主要影响女性。先前的研究表明,由于MeCP2缺陷引起的主要表型缺陷可能是可逆的,因为Mecp2缺陷小鼠中Mecp2基因的延迟重新激活改善了Rett样表型的某些方面。虽然鼓励进行前瞻性基因替代治疗,但尚不清楚在Mecp2缺陷型小鼠中概括的其他Rett综合征合并症是否会对功能性Mecp2的延迟重新引入产生类似反应。在这里,我们表明,在雄性和雌性Mecp2缺陷型小鼠中,Mecp2的延迟激活可以挽救运动和焦虑样行为,癫痫样活动,皮质和海马脑电图模式以及温度调节方面的缺陷。这些发现表明,由Mecp2缺乏引起的神经系统缺陷并没有根深蒂固,并提供了进一步的证据表明,Mecp2功能的延迟恢复可以改善由Mecp2缺陷小鼠概括的广泛的Rett样缺陷。

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