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Redox imbalance induced by the accumulation of reactive oxygen species (ROS) accelerates age-related processes, often accompanied by a decrease in circadian rhythm amplitude. However, the underlying mechanisms by which ROS modulate circadian rhythms remain poorly understood. In this study, we found that ROS disrupt circadian rhythms in both zebrafish, as indicated by changes in diurnal behavior and clock gene expression, and in a human cell model. Using weighted gene co-expression network analysis (WGCNA) and machine learning approaches (RF, LASSO, SVM), EZH2 was identified as a key gene involved in regulating circadian rhythms under oxidative stress conditions. To further investigate the role of EZH2, we employed ezh2 mutants, Morpholino injection, and overexpression treatment and discovered that EZH2 is crucial in mediating the effect of ROS on circadian rhythms. Furthermore, EZH2 interacts with the CLOCK-BMAL1 complex to regulate the transcription of clock genes, as demonstrated through co-immunoprecipitation (co-IP), chromatin immunoprecipitation (ChIP), and dual-luciferase reporter assays. Our study revealed that ROS disrupt circadian rhythms by regulating the interaction between EZH2 and the CLOCK-BMAL1 complex, shedding light on the molecular mechanisms of circadian rhythm disruption under oxidative stress and suggesting potential targets for age-related and circadian disorders.
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http://dx.doi.org/10.1016/j.redox.2025.103526 | DOI Listing |
PLoS One
September 2025
Department of Biological Sciences, University of Limerick, Limerick, Ireland.
This study investigates the interaction between circadian rhythms and lipid metabolism disruptions in the context of obesity. Obesity is known to interfere with daily rhythmicity, a crucial process for maintaining brain homeostasis. To better understand this relationship, we analyzed transcriptional data from mice fed with normal or high-fat diet, focusing on the mechanisms linking genes involved with those regulating circadian rhythms.
View Article and Find Full Text PDFNucleic Acids Res
September 2025
Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Cells may exploit oscillatory gene expression to encode biological information. Temporal features of oscillations, such as pulse frequency and amplitude, are determinant for the outcome of signalling pathways. However, little effort has been devoted to unveiling the role of pulsatility in the context of post-transcriptional gene regulation, where microRNAs act by binding to RNAs and regulate their expression.
View Article and Find Full Text PDFSleep Adv
August 2025
Division of Public Health, Department of Family and Preventive Medicine, University of Utah, 303 Chipeta Way, Salt Lake City, UT 84013, United States of America.
Individuals with mild cognitive impairment (MCI) demonstrate cognitive decline without major functional impairment and are at increased risk for developing Alzheimer's disease and related dementias (ADRD). Sleep and biobehavioral rhythm disturbances (disruptions in 24-h oscillations in physiology and behavior, including rest-activity patterns and mealtimes) are more than twice as common among patients with MCI than cognitively intact older adults. Importantly, the consequences of sleep and biobehavioral rhythm disruption in MCI extend beyond the patient, also profoundly affecting the spouse/partner.
View Article and Find Full Text PDFMol Ecol
September 2025
Faculty of Veterinary Medicine, University of Calgary, Calgary, Alberta, Canada.
Many ant species show dramatic shifts in behaviour when infected with parasites, but the molecular basis of these behavioural changes is not well understood. An example is the wood ant, Formica aserva, which serves as an intermediate host for the lancet liver fluke, Dicrocoelium dendriticum. Infected ants leave their nests during the cool hours of the day, ascend a flower and then attach themselves to a petal with their mandibles.
View Article and Find Full Text PDFInt J Psychol
October 2025
Department of Psychology "Renzo Canestrari", University of Bologna, Bologna, Italy.
Chronotype is the preference for sleep and activity timing, differentiating individuals into morning (i.e., waking and sleeping early), evening (i.
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