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一个压力感应电路向中央起搏器发出信号,以重新设定昼夜节律。

A stress-sensing circuit signals to the central pacemaker to reprogram circadian rhythms.

作者信息

Yurgel Maria E, Gao Claire, O'Malley John J, Tang Qijun, Yanay Noam, Bashford Alison R, Zhan Jesse J, Lutas Andrew, Krashes Michael J, Zhao Haiqing, Penzo Mario A, Hattar Samer

机构信息

Section on Light and Circadian Rhythms (SLCR), National Institute of Mental Health, National Institutes of Health (NIMH), Bethesda, MD 20892, USA.

Section on the Neural Circuits of Emotion and Motivation, NIMH, Bethesda, MD 20892, USA.

出版信息

Sci Adv. 2025 Jun 20;11(25):eadr7960. doi: 10.1126/sciadv.adr7960.

Abstract

The circadian system provides a temporal framework for animals to anticipate environmental events, including threats. However, the effects of stressors on the circadian system remain poorly understood. Here, we demonstrate that, in mice, stressors shift the phase of the central pacemaker, housed in the suprachiasmatic nucleus (SCN), through glutamatergic inputs from the anterior paraventricular nucleus of the thalamus (aPVT). Unlike light, which can phase delay or advance the central pacemaker, stressors consistently induce delays, effects attenuated by inhibiting aPVT neurons. Stressors robustly activate AVP-expressing neurons within the SCN and are associated with inhibition of VIP-expressing neurons, whereas light strongly activates VIP-expressing neurons with minimal effects on AVP-expressing neurons. Pairing stressors with light reveals distinct time-dependent interactions, enhancing phase delays at early night but abolishing phase advances at late night. Our findings uncover distinct SCN microcircuits that differentially encode light and stressors, providing insights into how environmental cues modulate circadian timing.

摘要

昼夜节律系统为动物预测包括威胁在内的环境事件提供了一个时间框架。然而,应激源对昼夜节律系统的影响仍知之甚少。在这里,我们证明,在小鼠中,应激源通过来自丘脑前室旁核(aPVT)的谷氨酸能输入,使位于视交叉上核(SCN)的中央起搏器的相位发生偏移。与可以使中央起搏器相位延迟或提前的光不同,应激源始终会诱导延迟,通过抑制aPVT神经元可减弱这种效应。应激源强烈激活SCN内表达血管加压素(AVP)的神经元,并与抑制表达血管活性肠肽(VIP)的神经元有关,而光强烈激活表达VIP的神经元,对表达AVP的神经元影响最小。将应激源与光配对会揭示出不同的时间依赖性相互作用,在深夜增强相位延迟,但在深夜消除相位提前。我们的研究结果揭示了不同的SCN微回路,它们对光和应激源进行不同的编码,为环境线索如何调节昼夜节律提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a868/12180509/2fc1569f599d/sciadv.adr7960-f1.jpg

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