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Suppressed cellular oscillations in after-hours mutant mice are associated with enhanced circadian phase-resetting

Authors :
Fiona F Scott
Clare Guilding
Hugh D. Piggins
David A. Bechtold
Sven Wegner
Timothy M. Brown
Source :
The Journal of Physiology
Publication Year :
2012

Abstract

Within the core molecular clock, protein phosphorylation and degradation play a vital role in determining circadian period. The ‘after-hours’ (Afh) mutation in mouse slows the degradation of the core clock protein Cryptochrome, lengthening the period of the molecular clock in the suprachiasmatic nuclei (SCN) and behavioural wheel-running rhythms. However, we do not yet know how the Afh mutation affects other aspects of physiology or the activity of circadian oscillators in other brain regions. Here we report that daily rhythms of metabolism and ingestive behaviours are altered in these animals, as are PERIOD2::LUCIFERASE (PER2::LUC) rhythms in mediobasal hypothalamic nuclei, which influence these behaviours. Overall there is a trend towards period lengthening and a decrease in amplitude of PER2::LUC rhythms throughout the brain. Imaging of single cells from the arcuate and dorsomedial hypothalamic nuclei revealed this reduction in tissue oscillator amplitude to be due to a decrease in the amplitude, rather than a desynchrony, of single cells. Consistent with existing models of oscillator function, this cellular phenotype was associated with a greater susceptibility to phase-shifting stimuli in vivo and in vitro, with light evoking high-amplitude Type 0 resetting in Afh mutant mice. Together, these findings reveal unexpected consequences of the Afh mutation on the amplitude and synchrony of individual cellular oscillators in the SCN.

Details

ISSN :
14697793
Volume :
591
Issue :
4
Database :
OpenAIRE
Journal :
The Journal of physiology
Accession number :
edsair.doi.dedup.....018fe3c4c5e5d208fd7f9e1ca84fb4cc