Post-transcriptional regulation contributes to Drosophila clock gene mRNA cycling
- 1 December 1997
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 16 (23) , 7146-7155
- https://doi.org/10.1093/emboj/16.23.7146
Abstract
The period (per) and timeless (tim) genes are intimately involved in the generation and maintenance of Drosophila circadian rhythms. Both genes are expressed in a circadian manner, and the two proteins (PER and TIM) participate in feedback regulation which contributes to the mRNA oscillations. Previous studies indicate that the circadian regulation is in part transcriptional. To investigate quantitative features of per and tim transcription, we analyzed the in vivo transcription rate in fly‐head nuclei with a nuclear run‐on assay. The results show a robust transcriptional regulation, which is similar but not identical for the two genes. In addition, per mRNA levels are regulated at a post‐transcriptional level. This regulatory mode makes a major contribution to the per mRNA oscillations from a previously described per transgenic strain as well as to the mRNA oscillations of a recently identified Drosophila circadianly regulated gene (Crg‐1). The data show that circadian mRNA oscillations can take place without evident transcriptional regulation.Keywords
This publication has 44 references indexed in Scilit:
- Sex-Specific Assembly of a Dosage Compensation Complex on the Nematode X ChromosomeScience, 1996
- Resetting the Drosophila Clock by Photic Regulation of PER and a PER-TIM ComplexScience, 1996
- Regulation of the Drosophila Protein Timeless Suggests a Mechanism for Resetting the Circadian Clock by LightCell, 1996
- A light-entrainment mechanism for the Drosophila circadian clockNature, 1996
- Circadian rhythms in drosophila can be driven by period expression in a restricted group of central brain cellsNeuron, 1995
- Temporally regulated nuclear entry of the Drosophila period protein contributes to the circadian clockNeuron, 1995
- A promoterless period gene mediates behavioral rhythmicity and cyclical per expression in a restricted subset of the drosophila nervous systemNeuron, 1994
- Phase Shifting of the Circadian Clock by Induction of the Drosophila period ProteinScience, 1994
- Behavior of period-altered circadian rhythm mutants ofDrosophila in light: Dark cycles (Diptera: Drosophilidae)Journal of Insect Behavior, 1992
- Feedback of the Drosophila period gene product on circadian cycling of its messenger RNA levelsNature, 1990