Related Experiment Video
Updated: Jul 25, 2025

Manipulation of Rhythmic Food Intake in Mice Using a Custom-Made Feeding System
Published on: December 16, 2022
Mechanical control of the mammalian circadian clock via YAP/TAZ and TEAD
Juan F Abenza1,2, Leone Rossetti1, Malèke Mouelhi1
1Institute for Bioengineering of Catalonia , The Barcelona Institute for Science and Technology , Barcelona, Spain.
Abstract:
Autonomous circadian clocks exist in nearly every mammalian cell type. These cellular clocks are subjected to a multilayered regulation sensitive to the mechanochemical cell microenvironment. Whereas the biochemical signaling that controls the cellular circadian clock is increasingly well understood, mechanisms underlying regulation by mechanical cues are largely unknown. Here we show that the fibroblast circadian clock is mechanically regulated through YAP/TAZ nuclear levels. We use high-throughput analysis of single-cell circadian rhythms and apply controlled mechanical, biochemical, and genetic perturbations to study the expression of the clock gene Rev-erbα. We observe that Rev-erbα circadian oscillations are disrupted with YAP/TAZ nuclear translocation. By targeted mutations and overexpression of YAP/TAZ, we show that this mechanobiological regulation, which also impacts core components of the clock such as Bmal1 and Cry1, depends on the binding of YAP/TAZ to the transcriptional effector TEAD. This mechanism could explain the impairment of circadian rhythms observed when YAP/TAZ activity is upregulated, as in cancer and aging.
Related Concept Videos
Circadian Rhythms and Gene Regulation
Biological Clocks and Seasonal Responses
PI3K/mTOR/AKT Signaling Pathway
The Cell Cycle Control System

