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Single-cell gene activity shows cell-specific daily rhythms and their disruption by sudden timing changes in mouse aorta

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Abstract

Single-cell RNA-sequencing of 141,752 cells reveals hundreds of cycling genes in vascular smooth muscle cells and fibroblasts impacted by circadian misalignment.

  • Circadian misalignment is associated with altered gene expression patterns in the vasculature, indicating potential disruptions in vascular function.
  • Female vascular smooth muscle cells exhibit broader rhythmicity and higher amplitudes of cycling genes compared to males.
  • After acute misalignment, reductions in gene expression amplitudes and limited adaptation of peak times suggest internal misalignment between central and peripheral rhythms.
  • Vascular smooth muscle cells show signs of proteostatic stress, including downregulation of stress-response genes and upregulation of protein degradation pathways.
  • In vivo analysis indicates increased vascular permeability and altered thrombus formation in males following circadian misalignment.

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