Mechanical loading and hyperosmolarity as a daily resetting cue for skeletal circadian clocks

Author:

Dudek MichalORCID,Pathiranage Dharshika R. J.,Bano-Otalora BeatrizORCID,Paszek Anna,Rogers Natalie,Gonçalves Cátia F.,Lawless CraigORCID,Wang Dong,Luo Zhuojing,Yang LiuORCID,Guilak FarshidORCID,Hoyland Judith A.ORCID,Meng Qing-JunORCID

Abstract

AbstractDaily rhythms in mammalian behaviour and physiology are generated by a multi-oscillator circadian system entrained through environmental cues (e.g. light and feeding). The presence of tissue niche-dependent physiological time cues has been proposed, allowing tissues the ability of circadian phase adjustment based on local signals. However, to date, such stimuli have remained elusive. Here we show that daily patterns of mechanical loading and associated osmotic challenge within physiological ranges reset circadian clock phase and amplitude in cartilage and intervertebral disc tissues in vivo and in tissue explant cultures. Hyperosmolarity (but not hypo-osmolarity) resets clocks in young and ageing skeletal tissues and induce genome-wide expression of rhythmic genes in cells. Mechanistically, RNAseq and biochemical analysis revealed the PLD2-mTORC2-AKT-GSK3β axis as a convergent pathway for both in vivo loading and hyperosmolarity-induced clock changes. These results reveal diurnal patterns of mechanical loading and consequent daily oscillations in osmolarity as a bona fide tissue niche-specific time cue to maintain skeletal circadian rhythms in sync.

Funder

RCUK | Medical Research Council

Wellcome Trust

RCUK | Biotechnology and Biological Sciences Research Council

Versus Arthritis Senior Fellowship Award 20875

National Natural Science Foundation of China

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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