Department of Physiology, Institute of Biomedicine and Translational Medicine, University of Tartu, 19 Ravila Street, 50411, Tartu, Estonia.
Centre of Excellence in Genomics and Translational Medicine, University of Tartu, 19 Ravila Street, 50411, Tartu, Estonia.
Sci Rep. 2019 Apr 1;9(1):5457. doi: 10.1038/s41598-019-41991-8.
Neuronal growth regulator 1 (NEGR1) belongs to the immunoglobulin (IgLON) superfamily of cell adhesion molecules involved in cortical layering. Recent functional and genomic studies implicate the role of NEGR1 in a wide spectrum of psychiatric disorders, such as major depression, schizophrenia and autism. Here, we investigated the impact of Negr1 deficiency on brain morphology, neuronal properties and social behavior of mice. In situ hybridization shows Negr1 expression in the brain nuclei which are central modulators of cortical-subcortical connectivity such as the island of Calleja and the reticular nucleus of thalamus. Brain morphological analysis revealed neuroanatomical abnormalities in Negr1 mice, including enlargement of ventricles and decrease in the volume of the whole brain, corpus callosum, globus pallidus and hippocampus. Furthermore, decreased number of parvalbumin-positive inhibitory interneurons was evident in Negr1 hippocampi. Behaviorally, Negr1 mice displayed hyperactivity in social interactions and impairments in social hierarchy. Finally, Negr1 deficiency resulted in disrupted neurite sprouting during neuritogenesis. Our results provide evidence that NEGR1 is required for balancing the ratio of excitatory/inhibitory neurons and proper formation of brain structures, which is prerequisite for adaptive behavioral profiles. Therefore, Negr1 mice have a high potential to provide new insights into the neural mechanisms of neuropsychiatric disorders.
神经元生长调节因子 1(NEGR1)属于细胞黏附分子免疫球蛋白(IgLON)超家族,参与皮质分层。最近的功能和基因组研究表明 NEGR1 在广泛的精神疾病中起作用,如重度抑郁症、精神分裂症和自闭症。在这里,我们研究了 Negr1 缺乏对小鼠大脑形态、神经元特性和社会行为的影响。原位杂交显示 Negr1 在大脑核中表达,这些核是皮质-皮质下连接的中枢调节剂,如卡列哈岛和丘脑网状核。脑形态分析显示 Negr1 小鼠存在神经解剖异常,包括脑室扩大和全脑、胼胝体、苍白球和海马体积减少。此外,Negr1 海马中的 parvalbumin 阳性抑制性中间神经元数量减少。行为上,Negr1 小鼠在社交互动中表现出过度活跃,在社会等级中表现出障碍。最后,Negr1 缺乏导致神经突生成过程中的神经突发芽中断。我们的结果表明,NEGR1 对于平衡兴奋性/抑制性神经元的比例和大脑结构的正常形成是必需的,这是适应性行为特征的前提。因此,Negr1 小鼠有很大的潜力为神经精神疾病的神经机制提供新的见解。