Molecular and Integrative Biosciences Research Program, University of Helsinki, Helsinki, Finland.
Turku PET Centre, University of Turku, Turku, Finland.
Genes Brain Behav. 2021 Apr;20(4):e12708. doi: 10.1111/gbb.12708. Epub 2020 Oct 26.
Cryptochrome 2 (Cry2) is a core clock gene important for circadian regulation. It has also been associated with anxiety and depressive-like behaviors in mice, but the previous findings have been conflicting in terms of the direction of the effect. To begin to elucidate the molecular mechanisms of this association, we carried out behavioral testing, PET imaging, and gene expression analysis of Cry2 and Cry2 mice. Compared to Cry2 mice, we found that Cry2 mice spent less time immobile in the forced swim test, suggesting reduced despair-like behavior. Moreover, Cry2 mice had lower saccharin preference, indicative of increased anhedonia. In contrast, we observed no group differences in anxiety-like behavior. The behavioral changes were accompanied by lower metabolic activity of the ventro-medial hypothalamus, suprachiasmatic nuclei, ventral tegmental area, anterior and medial striatum, substantia nigra, and habenula after cold stress as measured by PET imaging with a glucose analog. Although the expression of many depression-associated and metabolic genes was upregulated or downregulated by cold stress, we observed no differences between Cry2 and Cry2 mice. These findings are consistent with other studies showing that Cry2 is required for normal emotional behavior. Our findings confirm previous roles of Cry2 in behavior and extend them by showing that the effects on behavior may be mediated by changes in brain metabolism.
CRY2(隐色素 2)是调节生物钟的核心基因,它与小鼠的焦虑和抑郁样行为也有关联。但是,之前的研究结果在作用方向上存在矛盾。为了开始阐明这种关联的分子机制,我们进行了行为测试、CRY2 和 Cry2 小鼠的 PET 成像和基因表达分析。与 Cry2 小鼠相比,我们发现 Cry2 小鼠在强迫游泳试验中不动的时间更少,这表明它们的绝望样行为减少。此外,Cry2 小鼠对蔗糖的偏好降低,表明快感缺失增加。相比之下,我们没有观察到焦虑样行为的组间差异。行为变化伴随着冷应激后腹内侧下丘脑、视交叉上核、腹侧被盖区、前内侧纹状体、黑质和缰核的代谢活性降低,这可以通过葡萄糖类似物的 PET 成像来测量。尽管许多与抑郁相关的基因和代谢基因在冷应激下的表达上调或下调,但我们没有观察到 Cry2 和 Cry2 小鼠之间的差异。这些发现与其他研究一致,表明 Cry2 是正常情绪行为所必需的。我们的发现证实了之前关于 Cry2 在行为中的作用,并通过显示对行为的影响可能是通过大脑代谢变化介导的,进一步扩展了这些作用。