Literature DB >> 18375864

Interferon-gamma alters electrical activity and clock gene expression in suprachiasmatic nucleus neurons.

Yongho Kwak1, Gabriella B Lundkvist, Johan Brask, Alec Davidson, Michael Menaker, Krister Kristensson, Gene D Block.   

Abstract

The proinflammatory cytokine interferon (IFN-gamma) is an immunomodulatory molecule released by immune cells. It was originally described as an antiviral agent but can also affect functions in the nervous system including circadian activity of the principal mammalian circadian pacemaker, the suprachiasmatic nucleus. IFN-gamma and the synergistically acting cytokine tumor necrosis factor-alpha acutely decrease spontaneous excitatory postsynaptic activity and alter spiking activity in tissue preparations of the SCN. Because IFN-gamma can be released chronically during infections, the authors studied the long-term effects of IFN-gamma on SCN neurons by treating dispersed rat SCN cultures with IFN-gamma over a 4-week period. They analyzed the effect of the treatment on the spontaneous spiking pattern and rhythmic expression of the "clock gene," Period 1. They found that cytokine-treated cells exhibited a lower average spiking frequency and displayed a more irregular firing pattern when compared with controls. Furthermore, long-term treatment with IFN-gamma in cultures obtained from a transgenic Per1-luciferase rat significantly reduced the Per1-luc rhythm amplitude in individual SCN neurons. These results show that IFN-gamma can alter the electrical properties and circadian clock gene expression in SCN neurons. The authors hypothesize that IFN-gamma can modulate circadian output, which may be associated with sleep and rhythm disturbances observed in certain infections and in aging.

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Year:  2008        PMID: 18375864     DOI: 10.1177/0748730407313355

Source DB:  PubMed          Journal:  J Biol Rhythms        ISSN: 0748-7304            Impact factor:   3.182


  26 in total

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Review 6.  Neurobiological studies of fatigue.

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8.  Influence of aging on Bmal1 and Per2 expression in extra-SCN oscillators in hamster brain.

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Review 9.  Systems biology of circadian-immune interactions.

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10.  Suprachiasmatic astrocytes modulate the circadian clock in response to TNF-α.

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