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Anhedonic behavior in cryptochrome 2-deficient mice is paralleled by altered diurnal patterns of amygdala gene expression

机译:隐色2缺陷小鼠的无性行为与杏仁核基因表达的昼夜模式改变平行

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摘要

Mood disorders are frequently paralleled by disturbances in circadian rhythm-related physiological and behavioral states and genetic variants of clock genes have been associated with depression. Cryptochrome 2 (Cry2) is one of the core components of the molecular circadian machinery which has been linked to depression, both, in patients suffering from the disease and animal models of the disorder. Despite this circumstantial evidence, a direct causal relationship between Cry2 expression and depression has not been established. Here, a genetic mouse model of Cry2 deficiency (Cry2−/− mice) was employed to test the direct relevance of Cry2 for depression-like behavior. Augmented anhedonic behavior in the sucrose preference test, without alterations in behavioral despair, was observed in Cry2−/− mice. The novelty suppressed feeding paradigm revealed reduced hyponeophagia in Cry2−/− mice compared to wild-type littermates. Given the importance of the amygdala in the regulation of emotion and their relevance for the pathophysiology of depression, potential alterations in diurnal patterns of basolateral amygdala gene expression in Cry2−/− mice were investigated focusing on core clock genes and neurotrophic factor systems implicated in the pathophysiology of depression. Differential expression of the clock gene Bhlhe40 and the neurotrophic factor Vegfb were found in the beginning of the active (dark) phase in Cry2−/− compared to wild-type animals. Furthermore, amygdala tissue of Cry2−/− mice contained lower levels of Bdnf-III. Collectively, these results indicate that Cry2 exerts a critical role in the control of depression-related emotional states and modulates the chronobiological gene expression profile in the mouse amygdala.Electronic supplementary materialThe online version of this article (doi:10.1007/s00726-015-1968-3) contains supplementary material, which is available to authorized users.
机译:情绪障碍通常与昼夜节律相关的生理和行为状态紊乱并存,并且时钟基因的遗传变异与抑郁症有关。隐花色素2(Cry2)是分子昼夜节律机制的核心成分之一,在患有该疾病的患者和该疾病的动物模型中,其均与抑郁症相关。尽管有这种间接证据,但尚未建立Cry2表达与抑郁之间的直接因果关系。在这里,使用Cry2缺乏症的遗传小鼠模型(Cry2 -/-小鼠)来测试Cry2与抑郁症行为的直接相关性。在Cry2 -/-小鼠中观察到蔗糖偏爱试验中无性行为增强,行为绝望没有改变。与野生型同窝仔相比,这种新颖的抑制喂养范例揭示了Cry2 -/-小鼠的neonephagia减少。考虑到杏仁核在情绪调节中的重要性及其与抑郁症的病理生理学的关系,着重研究了核心时钟基因研究了Cry2 -/-小鼠基底外侧杏仁核基因表达的昼夜模式的潜在变化和神经营养因子系统参与抑郁症的病理生理。与野生型动物相比,在Cry2 -/-的活跃(黑暗)阶段开始时发现了时钟基因Bhlhe40和神经营养因子Vegfb的差异表达。此外,Cry2 -/-小鼠的杏仁体组织含有较低水平的Bdnf-III。总的来说,这些结果表明Cry2在控制与抑郁相关的情绪状态中起着关键作用,并调节小鼠杏仁核中的时序生物学基因表达谱。电子补充材料本文的在线版本(doi:10.1007 / s00726-015-1968) -3)包含补充材料,授权用户可以使用。

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