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Clock-Generated Temporal Codes Determine Synaptic Plasticity to Control Sleep.

Abstract

Neurons use two main schemes to encode information: rate coding (frequency of firing) and temporal coding (timing or pattern of firing). While the importance of rate coding is well established, it remains controversial whether temporal codes alone are sufficient for controlling behavior. Moreover, the molecular mechanisms underlying the generation of specific temporal codes are enigmatic. Here, we show in Drosophila clock neurons that distinct temporal spike patterns, dissociated from changes in firing rate, encode time-dependent arousal and regulate sleep. From a large-scale genetic screen, we identify the molecular pathways mediating the circadian-dependent changes in ionic flux and spike morphology that rhythmically modulate spike timing. Remarkably, the daytime spiking pattern alone is sufficient to drive plasticity in downstream arousal neurons, leading to increased firing of these cells. These findings demonstrate a causal role for temporal coding in behavior and define a form of synaptic plasticity triggered solely by temporal spike patterns.Copyright © 2018 Elsevier Inc. All rights reserved.

Authors

Masashi Tabuchi, Joseph D Monaco, Grace Duan, Benjamin Bell, Sha Liu, Qili Liu, Kechen Zhang, Mark N Wu

Department of Neurology, Johns Hopkins University, Baltimore, MD 21205, USA; Solomon H. Snyder Department of Neuroscience, Johns Hopkins University, Baltimore, MD 21205, USA. Electronic address: marknwu@jhmi.edu.

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31 products referenced in this paper

(31470) Goat anti-Rat IgG (H+L) Secondary Antibody, HRP

an Antibody by Invitrogen Antibodies

Applications:

WB (1:10000)

Tissue species:

Homo sapiens (Human)

(9E 10) 9E 10

an Antibody by Developmental Studies Hybridoma Bank

(A-11004) Goat anti-Mouse IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa Fluor™ 568

an Antibody by Invitrogen Antibodies

Applications:

IHC (1:1000)

Tissue species:

Drosophila melanogaster (Fruit fly)

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Journal Cell

Volume 175

Issue 5

Pages 1213-1227.e18

Publication Date 15 November 2018

View on PubMed® View on Journal Website

Publication metadata is provided by PubMed®, courtesy of the U.S. National Library of Medicine. Information for this publication was last updated on 2026-02-12 03:03:40 UTC.

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