Neuroscience and Mental Health Research Institute, Cardiff University, Cardiff, UK.
Okinawa Institute of Science and Technology, Okinawa, Japan.
Genes Brain Behav. 2022 Apr;21(4):e12799. doi: 10.1111/gbb.12799. Epub 2022 Feb 3.
Mutations affecting DLG2 are emerging as a genetic risk factor associated with neurodevelopmental psychiatric disorders including schizophrenia, autism spectrum disorder, and bipolar disorder. Discs large homolog 2 (DLG2) is a member of the membrane-associated guanylate kinase protein superfamily of scaffold proteins, a component of the post-synaptic density in excitatory neurons and regulator of synaptic function and plasticity. It remains an important question whether and how haploinsuffiency of DLG2 contributes to impairments in basic behavioural and cognitive functions that may underlie symptomatic domains in patients that cross diagnostic boundaries. Using a heterozygous Dlg2 mouse model we examined the impact of reduced Dlg2 expression on functions commonly impaired in neurodevelopmental psychiatric disorders including motor co-ordination and learning, pre-pulse inhibition and habituation to novel stimuli. The heterozygous Dlg2 mice exhibited behavioural impairments in long-term motor learning and long-term habituation to a novel context, but not motor co-ordination, initial responses to a novel context, PPI of acoustic startle or anxiety. We additionally showed evidence for the reduced regulation of the synaptic plasticity-associated protein cFos in the motor cortex during motor learning. The sensitivity of selective behavioural and cognitive functions, particularly those dependent on synaptic plasticity, to reduced expression of DLG2 give further credence for DLG2 playing a critical role in specific brain functions but also a mechanistic understanding of symptom expression shared across psychiatric disorders.
影响 DLG2 的突变正在成为与神经发育性精神障碍相关的遗传风险因素,包括精神分裂症、自闭症谱系障碍和双相情感障碍。Discs large 同源物 2(DLG2)是膜相关鸟苷酸激酶蛋白支架蛋白超家族的成员,是兴奋性神经元突触后密度的组成部分,也是调节突触功能和可塑性的关键蛋白。DLG2 的杂合不足是否以及如何导致基本行为和认知功能受损,从而导致跨越诊断界限的患者的症状域,仍然是一个重要问题。我们使用杂合子 Dlg2 小鼠模型研究了 Dlg2 表达减少对神经发育性精神障碍常见功能的影响,包括运动协调和学习、前脉冲抑制和对新刺激的习惯化。杂合子 Dlg2 小鼠在长期运动学习和对新环境的长期习惯化中表现出行为障碍,但在运动协调、对新环境的初始反应、听觉起始惊跳的 PPI 或焦虑方面没有障碍。我们还证明了在运动学习过程中,运动皮层中与突触可塑性相关的蛋白 cFos 的调节减少。DLG2 表达减少对特定行为和认知功能的敏感性,特别是对依赖于突触可塑性的功能的敏感性,进一步证明了 DLG2 在特定脑功能中起着关键作用,但也为跨精神障碍共享的症状表达提供了机制理解。