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TRESK regulates brain to track time using sunlight as its cue

Date:
September 14, 2020
Source:
University of Kent
Summary:
Research has found that TRESK, a calcium regulated two-pore potassium channel, regulates the brain's central circadian clock to differentiate behavior between day and night.
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Research from the University of Kent has found that TRESK, a calcium regulated two-pore potassium channel, regulates the brain's central circadian clock to differentiate behaviour between day and night.

It was previously understood that the brain's circadian clock, otherwise known as the suprachiasmatic nucleus (SCN), depends on multiple mechanisms to ensure rhythmic electrical activity that varies between day and night. Yet, this research has clarified that TRESK plays a crucial role in this system. The mechanism was previously unknown.

The study, led by Dr Gurprit Lall at the Medway School of Pharmacy and colleagues at the University of Oxford, investigated the role of TRESK in the brain's central circadian clock and found that when TRESK levels were reduced the biological rhythm was disrupted.

The brain's circadian clock is usually active during daylight and not during the night. When the absence of TRESK was explored in the study, the clock had lost its day and night association and did not sense light. This further identifies that not only does TRESK affect cell membrane activity, it affects response behaviour and the clock's communication to the body. Humans need this to perform efficiently.

Dr Lall said: 'This research has shown that TRESK is key to SCN function, regulating multiple aspects of SCN neurophysiology. TRESK provides a clear delineation of light responses between the day and night. It maintains the SCN in the appropriate state for nocturnal light-induced behavioural changes. These findings are significant to future research into how the circadian clock responds to environmental stimuli.'


Story Source:

Materials provided by University of Kent. Original written by Olivia Miller. Note: Content may be edited for style and length.


Journal Reference:

  1. Tatjana Lalic, Aiste Steponenaite, Liting Wei, Sridhar R. Vasudevan, Alistair Mathie, Stuart N. Peirson, Gurprit S. Lall, M. Zameel Cader. TRESK is a key regulator of nocturnal suprachiasmatic nucleus dynamics and light adaptive responses. Nature Communications, 2020; 11 (1) DOI: 10.1038/s41467-020-17978-9

Cite This Page:

University of Kent. "TRESK regulates brain to track time using sunlight as its cue." ScienceDaily. ScienceDaily, 14 September 2020. <www.sciencedaily.com/releases/2020/09/200914083837.htm>.
University of Kent. (2020, September 14). TRESK regulates brain to track time using sunlight as its cue. ScienceDaily. Retrieved November 20, 2024 from www.sciencedaily.com/releases/2020/09/200914083837.htm
University of Kent. "TRESK regulates brain to track time using sunlight as its cue." ScienceDaily. www.sciencedaily.com/releases/2020/09/200914083837.htm (accessed November 20, 2024).

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