Impairments in sensory-motor gating and information processing in a mouse model of Ehmt1 haploinsufficiency.

Brain and neuroscience advances Pub Date : 2020-06-18 eCollection Date: 2020-01-01 DOI:10.1177/2398212820928647
Brittany A Davis, François David, Ciara O'Regan, Manal A Adam, Adrian J Harwood, Vincenzo Crunelli, Anthony R Isles
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Abstract

Regulators of chromatin dynamics and transcription are increasingly implicated in the aetiology of neurodevelopmental disorders. Haploinsufficiency of EHMT1, encoding a histone methyltransferase, is associated with several neurodevelopmental disorders, including Kleefstra syndrome, developmental delay and autism spectrum disorder. Using a mouse model of Ehmt1 haploinsufficiency (Ehmt1 D6Cre/+), we examined a number of brain and behavioural endophenotypes of relevance to neurodevelopmental disorders. Specifically, we show that Ehmt1 D6Cre/+ mice have deficits in information processing, evidenced by abnormal sensory-motor gating, a complete absence of object recognition memory, and a reduced magnitude of auditory evoked potentials in both paired-pulse inhibition and mismatch negativity. The electrophysiological experiments show that differences in magnitude response to auditory stimulus were associated with marked reductions in total and evoked beta- and gamma-band oscillatory activity, as well as significant reductions in phase synchronisation. The pattern of electrophysiological deficits in Ehmt1 D6Cre/+ matches those seen in control mice following administration of the selective NMDA-R antagonist, ketamine. This, coupled with reduction of Grin1 mRNA expression in Ehmt1 D6Cre/+ hippocampus, suggests that Ehmt1 haploinsufficiency may lead to disruption in NMDA-R. Taken together, these data indicate that reduced Ehmt1 dosage during forebrain development leads to abnormal circuitry formation, which in turn results in profound information processing deficits. Such information processing deficits are likely paramount to our understanding of the cognitive and neurological dysfunctions shared across the neurodevelopmental disorders associated with EHMT1 haploinsufficiency.

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Ehmt1单倍体缺陷小鼠模型的感觉运动门控和信息处理能力受损
染色质动力学和转录的调节因子越来越多地与神经发育障碍的病因有关。编码组蛋白甲基转移酶的EHMT1单倍体缺陷与多种神经发育障碍有关,包括克莱夫斯特拉综合征、发育迟缓和自闭症谱系障碍。我们利用 Ehmt1 单倍体缺乏的小鼠模型(Ehmt1 D6Cre/+),研究了与神经发育障碍相关的一些大脑和行为内表型。具体来说,我们发现 Ehmt1 D6Cre/+ 小鼠在信息处理方面存在缺陷,表现为感觉-运动门控异常、完全没有物体识别记忆以及在配对脉冲抑制和错配负性中听觉诱发电位的幅度降低。电生理学实验表明,对听觉刺激的幅度反应差异与总的和诱发的β和γ波段振荡活动的明显减少以及相位同步性的显著降低有关。Ehmt1 D6Cre/+的电生理缺陷模式与对照组小鼠在服用选择性NMDA-R拮抗剂氯胺酮后的电生理缺陷模式一致。这一点,再加上 Ehmt1 D6Cre/+ 海马中 Grin1 mRNA 表达的减少,表明 Ehmt1 单倍体缺陷可能会导致 NMDA-R 紊乱。综上所述,这些数据表明,前脑发育过程中 Ehmt1 剂量的减少会导致异常的电路形成,进而造成严重的信息处理缺陷。这种信息处理缺陷很可能是我们理解与 EHMT1 单倍体缺失相关的神经发育障碍所共有的认知和神经功能障碍的关键。
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