Department of Neurophysiology and Neuropharmacology, Center for Physiology and Pharmacology, Medical University of Vienna, Schwarzspanierstraße 17, 1090, Vienna, Austria.
Department of Laboratory Medicine, Medical University of Vienna, Währinger Gürtel 18-20, 1090, Vienna, Austria.
Psychoneuroendocrinology. 2020 Jan;111:104480. doi: 10.1016/j.psyneuen.2019.104480. Epub 2019 Oct 19.
The highly conserved transcription factor LIM-only 3 (Lmo3) is involved in important neurodevelopmental processes in several brain areas including the amygdala, a central hub for the generation and regulation of emotions. Accordingly, a role for Lmo3 in the behavioral responses to ethanol and in the display of anxiety-like behavior in mice has been demonstrated while the potential involvement of Lmo3 in the control of mood-related behavior has not yet been explored. Using a mouse model of Lmo3 depletion (Lmo3), we here report that genetic Lmo3 deficiency is associated with altered performance in behavioral paradigms assessing anxiety-like and depression-like traits and additionally accompanied by impairments in learned fear. Importantly, long-term potentiation (LTP) in the basolateral amygdala (BLA), a proposed cellular correlate of fear learning, is impaired in Lmo3 mice. RNA-Seq analysis of BLA tissue and gene set enrichment analysis (GSEA) of differentially expressed genes in Lmo3 mice reveals a significant overlap between genes overexpressed in Lmo3 mice and those enriched in the amygdala of a cohort of patients suffering from major depressive disorder. Consequently, we propose that Lmo3 may play a role in the regulation of gene networks that are relevant to the regulation of emotions. Future work may aid to further explore the role of Lmo3 in the pathophysiology of affective disorders and its genetic foundations.
LIM 仅家族成员 3(Lmo3)是一种高度保守的转录因子,参与包括杏仁核在内的多个脑区的重要神经发育过程,杏仁核是产生和调节情绪的中枢枢纽。因此,已经证明 Lmo3 在小鼠对乙醇的行为反应和焦虑样行为的表现中起作用,而 Lmo3 对与情绪相关的行为的控制的潜在作用尚未被探索。使用 Lmo3 耗竭的小鼠模型(Lmo3),我们在此报告,遗传 Lmo3 缺乏与评估焦虑样和抑郁样特征的行为范式中的表现改变有关,并且还伴有学习恐惧的障碍。重要的是,在外侧杏仁核(BLA)中长时程增强(LTP)受损,LTP 被提议为恐惧学习的细胞相关性。BLA 组织的 RNA-Seq 分析和 Lmo3 小鼠中差异表达基因的基因集富集分析(GSEA)显示,在 Lmo3 小鼠中过度表达的基因与在患有重度抑郁症的患者的杏仁核中富集的基因之间存在显著重叠。因此,我们提出 Lmo3 可能在调节与情绪调节相关的基因网络中起作用。未来的工作可能有助于进一步探索 Lmo3 在情感障碍的病理生理学及其遗传基础中的作用。