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GABAB-mediated rescue of altered excitatory–inhibitory balance gamma synchrony and behavioral deficits following constitutive NMDAR-hypofunction

机译:GABAB介导的本构NMDAR功能减退后兴奋性-抑制性平衡γ同步性和行为缺陷改变的挽救

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摘要

Reduced N-methyl-D-aspartate-receptor (NMDAR) signaling has been associated with schizophrenia, autism and intellectual disability. NMDAR-hypofunction is thought to contribute to social, cognitive and gamma (30–80 Hz) oscillatory abnormalities, phenotypes common to these disorders. However, circuit-level mechanisms underlying such deficits remain unclear. This study investigated the relationship between gamma synchrony, excitatory–inhibitory (E/I) signaling, and behavioral phenotypes in NMDA-NR1neo−/− mice, which have constitutively reduced expression of the obligate NR1 subunit to model disrupted developmental NMDAR function. Constitutive NMDAR-hypofunction caused a loss of E/I balance, with an increase in intrinsic pyramidal cell excitability and a selective disruption of parvalbumin-expressing interneurons. Disrupted E/I coupling was associated with deficits in auditory-evoked gamma signal-to-noise ratio (SNR). Gamma-band abnormalities predicted deficits in spatial working memory and social preference, linking cellular changes in E/I signaling to target behaviors. The GABAB-receptor agonist baclofen improved E/I balance, gamma-SNR and broadly reversed behavioral deficits. These data demonstrate a clinically relevant, highly translatable neural-activity-based biomarker for preclinical screening and therapeutic development across a broad range of disorders that share common endophenotypes and disrupted NMDA-receptor signaling.
机译:减少的N-甲基-D-天冬氨酸受体(NMDAR)信号已与精神分裂症,自闭症和智力障碍有关。 NMDAR功能低下被认为是社交,认知和伽玛(30–80 Hz)振荡异常的原因,这些异常是这些疾病的常见表型。但是,尚不清楚造成这种缺陷的电路级机制。这项研究调查了NMDA-NR1 neo-/-小鼠中γ同步性,兴奋性抑制(E / I)信号传导和行为表型之间的关系,这些关系性地使专性NR1亚基的表达减少至模型破坏了发育NMDAR功能。本构NMDAR功能减退导致E / I平衡丧失,内在锥体细胞兴奋性增加,表达小白蛋白的中间神经元选择性破坏。中断的E / I耦合与听觉诱发的伽马信噪比(SNR)不足有关。 γ波段异常预测了空间工作记忆和社交偏好的不足,并将E / I信号的细胞变化与目标行为联系在一起。 GABAB受体激动剂巴氯芬改善了E / I平衡,γ-SNR并逆转了行为缺陷。这些数据证明了临床相关的,高度可翻译的基于神经活动的生物标记物,可用于临床前筛查和跨共有共同内表型和NMDA受体信号传导受阻的多种疾病的治疗开发。

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