Rhythmic Expression of a PER-Reporter in the Malpighian Tubules of Decapitated Drosophila: Evidence for a Brain-Independent Circadian Clock
Open Access
- 1 August 1997
- journal article
- research article
- Published by SAGE Publications in Journal of Biological Rhythms
- Vol. 12 (4) , 300-308
- https://doi.org/10.1177/074873049701200402
Abstract
The protein product (PER) of the Drosophila clock gene, period (per), is involved in a molecular feedback loop in which PER inhibits the transcription of its own mRNA. This feedback causes the PER protein to cycle in a circadian manner, and this cycling in specific regions of the brain (the presumed location of the central pacemaker) is responsible for the rhythmicity of locomotor activity and possibly eclosion. PER has also been detected in several nonneural tissues in the abdomen, but whether PER exhibits free-running and light-sensitive cycles in any of these tissues is not known. In this study, the authors assayed the spatial and temporal distribution of a PER-reporter expressed in transgenic flies carry ing a per-lacZ construct, which was shown to cycle in per-expressing brain cells. The authors demonstrate that this PER-reporter fusion protein cycles in the Malpighian tubules, showing first cytoplasmic accumulation, which is then followed by translocation of the signal into the nucleus. To test whether this rhythm was controlled by the brain, flies were decapitated and assayed for 3 days after decapitation. Expression patterns of PER-reporter in decapitated flies were nearly identical to those in intact flies reared in normal light-dark cycles, reversed light-dark cycles (phase shifted), and constant darkness. These results suggest that the Malpighian tubules contain a circadian pacemaker that functions inde pendently of the brain.Keywords
This publication has 31 references indexed in Scilit:
- Rhythms ofDrosophila periodgene expression in cultureProceedings of the National Academy of Sciences, 1997
- Circadian clock in Malpighian tubulesNature, 1997
- GENETIC AND MOLECULAR ANALYSIS OF CIRCADIAN RHYTHMSAnnual Review of Genetics, 1996
- The rhythms of sperm release from testis and mating flight are not correlated in Lymantria mothsJournal of Insect Physiology, 1996
- Isolation of timeless by PER Protein Interaction: Defective Interaction Between timeless Protein and Long-Period Mutant PER LScience, 1995
- A promoterless period gene mediates behavioral rhythmicity and cyclical per expression in a restricted subset of the drosophila nervous systemNeuron, 1994
- Expression of the period clock gene within different cell types in the brain of Drosophila adults and mosaic analysis of these cells' influence on circadian behavioral rhythmsJournal of Neuroscience, 1992
- Requirement forPeriodGene Expression in the Adult and Not During Development for Locomotor Activity Rhythms of ImaginalDrosophila MelanogasterJournal of Neurogenetics, 1990
- Circadian System Controlling Release of Sperm in the Insect TestesScience, 1989
- Purification and partial characterization of urate oxidase from Drosophila melanogasterInsect Biochemistry, 1982