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Sleep-active neuron specification and sleep induction require FLP-11 neuropeptides to systemically induce sleep.


ABSTRACT: Sleep is an essential behavioral state. It is induced by conserved sleep-active neurons that express GABA. However, little is known about how sleep neuron function is determined and how sleep neurons change physiology and behavior systemically. Here, we investigated sleep in Caenorhabditis elegans, which is induced by the single sleep-active neuron RIS. We found that the transcription factor LIM-6, which specifies GABAergic function, in parallel determines sleep neuron function through the expression of APTF-1, which specifies the expression of FLP-11 neuropeptides. Surprisingly FLP-11, and not GABA, is the major component that determines the sleep-promoting function of RIS. FLP-11 is constantly expressed in RIS. At sleep onset RIS depolarizes and releases FLP-11 to induce a systemic sleep state.

SUBMITTER: Turek M 

PROVIDER: S-EPMC4805538 | biostudies-literature | 2016 Mar

REPOSITORIES: biostudies-literature

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Sleep-active neuron specification and sleep induction require FLP-11 neuropeptides to systemically induce sleep.

Turek Michal M   Besseling Judith J   Spies Jan-Philipp JP   König Sabine S   Bringmann Henrik H  

eLife 20160307


Sleep is an essential behavioral state. It is induced by conserved sleep-active neurons that express GABA. However, little is known about how sleep neuron function is determined and how sleep neurons change physiology and behavior systemically. Here, we investigated sleep in Caenorhabditis elegans, which is induced by the single sleep-active neuron RIS. We found that the transcription factor LIM-6, which specifies GABAergic function, in parallel determines sleep neuron function through the expre  ...[more]

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