Circadian coupling of mitochondria in a deep-diving mammal

Author:

Ciccone Chiara12ORCID,Kante Fayiri12,Folkow Lars P.12ORCID,Hazlerigg David G.12ORCID,West Alexander C.12ORCID,Wood Shona H.12ORCID

Affiliation:

1. Arctic Seasonal Timekeeping Initiative (ASTI), Arctic Chronobiology and Physiology Research Group , Department of Arctic and Marine Biology , , Tromsø NO-9037 , Norway

2. UiT – The Arctic University of Norway , Department of Arctic and Marine Biology , , Tromsø NO-9037 , Norway

Abstract

ABSTRACT Regulation of mitochondrial oxidative phosphorylation is essential to match energy supply to changing cellular energy demands, and to cope with periods of hypoxia. Recent work implicates the circadian molecular clock in control of mitochondrial function and hypoxia sensing. Because diving mammals experience intermittent episodes of severe hypoxia, with diel patterning in dive depth and duration, it is interesting to consider circadian–mitochondrial interaction in this group. Here, we demonstrate that the hooded seal (Cystophora cristata), a deep-diving Arctic pinniped, shows strong daily patterning of diving behaviour in the wild. Cultures of hooded seal skin fibroblasts exhibit robust circadian oscillation of the core clock genes per2 and arntl. In liver tissue collected from captive hooded seals, expression of arntl was some 4-fold higher in the middle of the night than in the middle of the day. To explore the clock–mitochondria relationship, we measured the mitochondrial oxygen consumption in synchronized hooded seal skin fibroblasts and found a circadian variation in mitochondrial activity, with higher coupling efficiency of complex I coinciding with the trough of arntl expression. These results open the way for further studies of circadian–hypoxia interactions in pinnipeds during diving.

Funder

Tromsø Forskningsstiftelse

Universitetet i Tromsø

Publisher

The Company of Biologists

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. ECR Spotlight – Chiara Ciccone;Journal of Experimental Biology;2024-04-01

2. Circadian clock makes mitochondria efficient for deep dives;Journal of Experimental Biology;2024-04-01

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