Laboratory for Advanced Brain Functions, Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Department of Research and Drug Discovery, Medical Innovation Center, Kyoto University Graduate School of Medicine, 53 Shogoin-Kawahara-cho, Sakyo-ku, Kyoto, 606-8507, Japan.
Sci Rep. 2020 Feb 4;10(1):1838. doi: 10.1038/s41598-020-58711-2.
The medial prefrontal cortex (mPFC) is a critical component of a cortico-basal ganglia-thalamo-cortical loop regulating limbic and cognitive functions. Within this circuit, two distinct nucleus accumbens (NAc) output neuron types, dopamine D1 or D2 receptor-expressing neurons, dynamically control the flow of information through basal ganglia nuclei that eventually project back to the mPFC to complete the loop. Thus, chronic dysfunction of the NAc may result in mPFC transcriptomal changes, which in turn contribute to disease conditions associated with the mPFC and basal ganglia. Here, we used RNA sequencing to analyse differentially expressed genes (DEGs) in the mPFC following a reversible neurotransmission blocking technique in D1 or D2 receptor-expressing NAc neurons, respectively (D1-RNB, or D2-RNB). Gene Set Enrichment Analysis revealed that gene sets of layer 5b and 6 pyramidal neurons were enriched in DEGs of the mPFC downregulated in both NAc D1- and D2-RNB mice. In contrast, gene sets of layer 5a pyramidal neurons were enriched in upregulated DEGs of the mPFC in D1-RNB mice, and downregulated DEGs of the mPFC in D2-RNB mice. These findings reveal for the first time that NAc output pathways play an important role in controlling mPFC gene expression.
内侧前额叶皮层(mPFC)是调节边缘和认知功能的皮质基底节-丘脑-皮质回路的关键组成部分。在该回路中,两种不同的伏隔核(NAc)输出神经元类型,多巴胺 D1 或 D2 受体表达神经元,动态控制信息在基底神经节核团中的流动,最终投射回 mPFC 以完成回路。因此,NAc 的慢性功能障碍可能导致 mPFC 转录组变化,进而导致与 mPFC 和基底神经节相关的疾病状态。在这里,我们使用 RNA 测序分析了在 D1 或 D2 受体表达 NAc 神经元中分别使用可逆神经传递阻断技术(D1-RNB 或 D2-RNB)后 mPFC 中的差异表达基因(DEGs)。基因集富集分析表明,在 D1 和 D2-RNB 小鼠的 mPFC 下调的 DEGs 中富集了 5b 和 6 层锥体神经元的基因集。相比之下,在 D1-RNB 小鼠的 mPFC 上调的 DEGs 中富集了 5a 层锥体神经元的基因集,而在 D2-RNB 小鼠的 mPFC 下调的 DEGs 中富集了 5a 层锥体神经元的基因集。这些发现首次表明,NAc 输出途径在控制 mPFC 基因表达方面发挥着重要作用。