Literature DB >> 18061682

Organization of cell and tissue circadian pacemakers: a comparison among species.

Mariska J Vansteensel1, Stephan Michel, Johanna H Meijer.   

Abstract

In most animal species, a circadian timing system has evolved as a strategy to cope with 24-hour rhythms in the environment. Circadian pacemakers are essential elements of the timing system and have been identified in anatomically discrete locations in animals ranging from insects to mammals. Rhythm generation occurs in single pacemaker neurons and is based on the interacting negative and positive molecular feedback loops. Rhythmicity in behavior and physiology is regulated by neuronal networks in which synchronization or coupling is required to produce coherent output signals. Coupling occurs among individual clock cells within an oscillating tissue, among functionally distinct subregions within the pacemaker, and between central pacemakers and the periphery. Recent evidence indicates that peripheral tissues can influence central pacemakers and contain autonomous circadian oscillators that contribute to the regulation of overt rhythmicity. The data discussed in this review describe coupling and synchronization mechanisms at the cell and tissue levels. By comparing the pacemaker systems of several multicellular animal species (Drosophila, cockroaches, crickets, snails, zebrafish and mammals), we will explore general organizational principles by which the circadian system regulates a 24-hour rhythmicity.

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Year:  2007        PMID: 18061682     DOI: 10.1016/j.brainresrev.2007.10.009

Source DB:  PubMed          Journal:  Brain Res Rev        ISSN: 0165-0173


  18 in total

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3.  Lack of exercise leads to significant and reversible loss of scale invariance in both aged and young mice.

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4.  The Drosophila Clock Neuron Network Features Diverse Coupling Modes and Requires Network-wide Coherence for Robust Circadian Rhythms.

Authors:  Zepeng Yao; Amelia J Bennett; Jenna L Clem; Orie T Shafer
Journal:  Cell Rep       Date:  2016-12-13       Impact factor: 9.423

5.  The Drosophila circadian clock is a variably coupled network of multiple peptidergic units.

Authors:  Z Yao; O T Shafer
Journal:  Science       Date:  2014-03-28       Impact factor: 47.728

6.  Circadian regulation of sleep and the sleep EEG under constant sleep pressure in the rat.

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7.  The circadian gene NPAS2 is a novel prognostic biomarker for breast cancer.

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Review 8.  Suprachiasmatic nucleus: cell autonomy and network properties.

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9.  How to achieve fast entrainment? The timescale to synchronization.

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10.  Circadian clock gene Per2 is not necessary for the photoperiodic response in mice.

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Journal:  PLoS One       Date:  2013-03-07       Impact factor: 3.240

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