The neural pathway from the superior subpart of the medial habenula to the interpeduncular nucleus suppresses anxiety

IF 9.6 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Takehisa Handa, Taku Sugiyama, Tanvir Islam, Joshua P. Johansen, Yuchio Yanagawa, Thomas J. McHugh, Hitoshi Okamoto
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Abstract

The medial habenula (MHb) and its projection target, the interpeduncular nucleus (IPN), are highly conserved throughout vertebrate evolution. The MHb-IPN pathway connects the limbic system to the brainstem, consisting of subpathways that project in a topographically organized manner, and has been implicated in the regulation of fear and anxiety. Previous studies have revealed subregion-specific functions of the cholinergic ventral MHb and a substance P (SP)-positive (SP+) subpart of the dorsal MHb (dMHb). In contrast, the dMHb also contains another subpart, a SP-negative subpart known as the ‘superior part of MHb (MHbS)’. Although the MHbS has been characterized from various aspects, e.g. distinct c-Fos responses to stressful events and electrophysiological properties compared to other subregions, many of its physiological functions remain to be investigated. Here we found that dopamine receptor D3 (DRD3)-Cre mice enable the labeling of the IPN subregion that receives the MHbS projection. The Cre-expressing somata within the lateral subnucleus of the IPN (LIPN) were concentrated in its most lateral area, which we refer to as the ‘lateral subregion of the LIPN (lLIPN)’. This region is characterized by the absence of SP+ axons, in contrast to the medial subregion of the LIPN (mLIPN) innervated by the SP+ axons from the dorsal MHb. Chemogenetic activation and genetically induced synaptic silencing of the DRD3-Cre+ cells reduced and enhanced anxiety-like behavior, respectively. Moreover, c-Fos expression was increased in the lLIPN under an anxiogenic environment. These findings suggest that the MHbS-lLIPN pathway is activated under anxiogenic environments to counteract anxiety.

Abstract Image

从内侧链上亚部到脚间核的神经通路抑制焦虑
在整个脊椎动物进化过程中,内侧链(MHb)和它的投射靶点——针间核(IPN)是高度保守的。MHb-IPN通路连接边缘系统和脑干,由以地形组织方式突出的子通路组成,并与恐惧和焦虑的调节有关。先前的研究已经揭示了胆碱能腹侧MHb和背侧MHb (dMHb)的P物质(SP)阳性(SP+)子部分的亚区域特异性功能。相比之下,dMHb还包含另一个子部分,一种sp阴性子部分,称为“MHb的上级部分”。尽管MHbS已从多个方面被表征,例如与其他亚区相比,不同的c-Fos对应激事件的反应和电生理特性,但其许多生理功能仍有待研究。在这里,我们发现多巴胺受体D3 (DRD3)-Cre小鼠能够标记接受MHbS投射的IPN亚区。IPN (LIPN)外侧亚核内表达cre的体细胞集中在其最外侧区域,我们称之为“LIPN外侧亚区”(lLIPN)。这一区域的特征是SP+轴突的缺失,与由MHb背侧的SP+轴突支配的LIPN内侧亚区(mLIPN)不同。DRD3-Cre+细胞的化学发生激活和遗传诱导的突触沉默分别减少和增强了焦虑样行为。此外,焦虑环境下lLIPN中c-Fos的表达增加。这些发现表明MHbS-lLIPN通路在焦虑环境下被激活以抵消焦虑。
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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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