Rhythmic potassium transport regulates the circadian clock in human red blood cells

Henslee, Erin A., Crosby, Priya, Kitcatt, Stephen J., Parry, Jack S. W., Bernardini, Andrea, Abdallat, Rula G., Braun, Gabriella, Fatoyinbo, Henry O., Harrison, Esther J., Edgar, Rachel S., Hoettges, Kai F., Reddy, Akhilesh B., Jabr, Rita I., von Schantz, Malcolm, O’Neill, John S. and Labeed, Fatima H. (2017) Rhythmic potassium transport regulates the circadian clock in human red blood cells. Nature Communications, 8 (1). p. 1978. ISSN 2041-1723

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Official URL: https://doi.org/10.1038/s41467-017-02161-4

Abstract

Circadian rhythms organize many aspects of cell biology and physiology to a daily temporal program that depends on clock gene expression cycles in most mammalian cell types. However, circadian rhythms are also observed in isolated mammalian red blood cells (RBCs), which lack nuclei, suggesting the existence of post-translational cellular clock mechanisms in these cells. Here we show using electrophysiological and pharmacological approaches that human RBCs display circadian regulation of membrane conductance and cytoplasmic conductivity that depends on the cycling of cytoplasmic K+ levels. Using pharmacological intervention and ion replacement, we show that inhibition of K+ transport abolishes RBC electrophysiological rhythms. Our results suggest that in the absence of conventional transcription cycles, RBCs maintain a circadian rhythm in membrane electrophysiology through dynamic regulation of K+ transport.

Item Type: Article
Subjects: A300 Clinical Medicine
C100 Biology
Department: Faculties > Health and Life Sciences > Psychology
Depositing User: John Coen
Date Deposited: 27 Aug 2021 11:13
Last Modified: 27 Aug 2021 11:15
URI: http://nrl.northumbria.ac.uk/id/eprint/47025

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