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April 2, 2009SHILAP Revista de lepidopterología702 citationsOpen Access

Harmonics of Circadian Gene Transcription in Mammals

MHMichael E. HughesLDLuciano DiTacchioKHKevin Hayes

Key Points

  • This research aims to investigate the patterns of gene transcription associated with circadian rhythms in mammalian tissues.
  • Developed a high-density time sampling method for precise measurement of transcriptional oscillations.
  • Compared oscillating transcription from mouse liver, NIH3T3, and U2OS cells.
  • Conducted validation experiments across multiple peripheral tissues including heart, kidney, and lungs.
  • Found a 100-fold difference in cycling transcripts between autonomous cellular models and intact tissues.
  • Identified two gene clusters that cycle at the second and third harmonic of circadian rhythmicity in liver only.
  • Discovered that 12-hour oscillatory transcripts exist in other peripheral tissues but are lost ex vivo and under restricted feeding conditions.

Abstract

The circadian clock is a molecular and cellular oscillator found in most mammalian tissues that regulates rhythmic physiology and behavior. Numerous investigations have addressed the contribution of circadian rhythmicity to cellular, organ, and organismal physiology. We recently developed a method to look at transcriptional oscillations with unprecedented precision and accuracy using high-density time sampling. Here, we report a comparison of oscillating transcription from mouse liver, NIH3T3, and U2OS cells. Several surprising observations resulted from this study, including a 100-fold difference in the number of cycling transcripts in autonomous cellular models of the oscillator versus tissues harvested from intact mice. Strikingly, we found two clusters of genes that cycle at the second and third harmonic of circadian rhythmicity in liver, but not cultured cells. Validation experiments show that 12-hour oscillatory transcripts occur in several other peripheral tissues as well including heart, kidney, and lungs. These harmonics are lost ex vivo, as well as under restricted feeding conditions. Taken in sum, these studies illustrate the importance of time sampling with respect to multiple testing, suggest caution in use of autonomous cellular models to study clock output, and demonstrate the existence of harmonics of circadian gene expression in the mouse.

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Cite This Study

Hughes et al. (2009) studied this question.

synapsesocial.com/papers/69da8e5fa6045d71bfa3d1achttps://doi.org/10.1371/journal.pgen.1000442
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