每2
神经科学
视交叉上核
节奏
昼夜节律
时钟
扁桃形结构
光对昼夜节律的影响
生物钟
兴奋性突触后电位
生物
心理学
物理
抑制性突触后电位
声学
作者
Qiang Liu,Jiali Xiong,Dong Won Kim,Sang‐Soo Lee,Benjamin J. Bell,C Alexandre,Seth Blackshaw,Alban Latrémolière,Mark N. Wu
标识
DOI:10.1101/2024.03.08.584151
摘要
SUMMARY Circadian rhythms are generated by the master pacemaker suprachiasmatic nucleus (SCN), in concert with local clocks throughout the body. While many brain regions exhibit cycling clock gene expression, the identity of a discrete extra-SCN brain oscillator that produces rhythmic behavior has remained elusive. Here, we show that an extra-SCN oscillator in the lateral amygdala (LA) is defined by expression of the clock-output molecule mWAKE/ANKFN1. mWAKE is enriched in the anterior/dorsal LA (adLA), and strikingly, selective disruption of clock function or excitatory signaling in adLA mWAKE neurons abolishes Period2 (Per2) rhythms throughout the LA. mWAKE levels rise at night and promote rhythmic excitability of adLA mWAKE neurons by upregulating Ca 2+ -activated K + channel activity specifically at night. adLA mWAKE neurons coordinate rhythmic sensory perception and anxiety in a clock-dependent and WAKE-dependent manner. Together, these data reveal the cellular identity of an extra-SCN brain oscillator and suggest a multi-level hierarchical system organizing molecular and behavioral rhythms.
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