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A Fear-Inducing Odor Alters PER2 and c-Fos Expression in Brain Regions Involved in Fear Memory

机译:恐惧引起的气味改变恐惧记忆所涉及的大脑区域中的PER2和c-Fos表达。

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摘要

Evidence demonstrates that rodents learn to associate a foot shock with time of day, indicating the formation of a fear related time-stamp memory, even in the absence of a functioning SCN. In addition, mice acquire and retain fear memory better during the early day compared to the early night. This type of memory may be regulated by circadian pacemakers outside of the SCN. As a first step in testing the hypothesis that clock genes are involved in the formation of a time-stamp fear memory, we exposed one group of mice to fox feces derived odor (TMT) at ZT 0 and one group at ZT 12 for 4 successive days. A separate group with no exposure to TMT was also included as a control. Animals were sacrificed one day after the last exposure to TMT, and PER2 and c-Fos protein were quantified in the SCN, amygdala, hippocampus, and piriform cortex. Exposure to TMT had a strong effect at ZT 0, decreasing PER2 expression at this time point in most regions except the SCN, and reversing the normal rhythm of PER2 expression in the amygdala and piriform cortex. These changes were accompanied by increased c-Fos expression at ZT0. In contrast, exposure to TMT at ZT 12 abolished the rhythm of PER2 expression in the amygdala. In addition, increased c-Fos expression at ZT 12 was only detected in the central nucleus of the amygdala in the TMT12 group. TMT exposure at either time point did not affect PER2 or c-Fos in the SCN, indicating that under a light-dark cycle, the SCN rhythm is stable in the presence of repeated exposure to a fear-inducing stimulus. Taken together, these results indicate that entrainment to a fear-inducing stimulus leads to changes in PER2 and c-Fos expression that are detected 24 hours following the last exposure to TMT, indicating entrainment of endogenous oscillators in these regions. The observed effects on PER2 expression and c-Fos were stronger during the early day than during the early night, possibly to prepare appropriate systems at ZT 0 to respond to a fear-inducing stimulus.
机译:有证据表明,啮齿动物学会了将脚部震动与一天中的时间联系起来,这表明即使在没有功能性SCN的情况下,也会产生与恐惧有关的时间戳记忆。此外,与清晨相比,小鼠在清晨获得和保留恐惧记忆的能力更好。 SCN外部的生物钟起搏器可能会调节此类记忆。作为检验时钟基因参与时间戳恐惧记忆形成的假设的第一步,我们连续4次将一组小鼠暴露于ZT 0处的狐狸粪便衍生气味(TMT)中,并将一组小鼠暴露于ZT 12中4次天。没有暴露于TMT的另一组也作为对照。在最后一次暴露于TMT的一天后处死动物,并在SCN,杏仁核,海马和梨状皮质中定量PER2和c-Fos蛋白。暴露于TMT对ZT 0有很强的作用,在这个时间点,除SCN以外的大多数区域都降低了PER2的表达,并逆转了杏仁核和梨状皮质中PER2表达的正常节律。这些变化伴随着ZT0处c-Fos表达的增加。相反,ZT 12暴露于TMT消除了杏仁核中PER2表达的节奏。另外,仅在TMT12组的杏仁核中央核中检测到ZT 12处的c-Fos表达增加。在任一时间点,TMT暴露都不会影响SCN中的PER2或c-Fos,这表明在明暗周期下,如果反复暴露于引起恐惧的刺激下,SCN节律是稳定的。综上所述,这些结果表明,诱使恐惧的刺激导致最后一次暴露于TMT后24小时检测到的PER2和c-Fos表达的变化,表明这些区域内源性振动子的参与。在清晨观察到的对PER2表达和c-Fos的影响要强于在夜间,可能是为了在ZT 0处准备适当的系统以应对诱发恐惧的刺激。

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