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1. The amyloid precursor protein intracellular domain induces sleep disruptions and its nuclear localization fluctuates in circadian pacemaker neurons in Drosophila and mice

2. Diurnal small RNA expression and post-transcriptional regulation in young and old Drosophila melanogaster heads [version 1; peer review: 1 approved with reservations]

3. FTD-associated mutations in Tau result in a combination of dominant and recessive phenotypes

4. Daily blue-light exposure shortens lifespan and causes brain neurodegeneration in Drosophila

5. Disease-Associated Mutant Tau Prevents Circadian Changes in the Cytoskeleton of Central Pacemaker Neurons

6. Circadian deep sequencing reveals stress-response genes that adopt robust rhythmic expression during aging

7. Manipulations of amyloid precursor protein cleavage disrupt the circadian clock in aging Drosophila

8. Discovery and Visualization of Age-dependent Patterns in the Diurnal Transcriptome of Drosophila

9. Loss of circadian clock accelerates aging in neurodegeneration-prone mutants

10. Aging alters circadian regulation of redox in Drosophila

11. Circadian regulation of glutathione levels and biosynthesis in Drosophila melanogaster.

12. Circadian rhythm in mRNA expression of the glutathione synthesis geneGclcis controlled by peripheral glial clocks inDrosophila melanogaster

13. Manipulations of amyloid precursor protein cleavage disrupt the circadian clock in aging Drosophila

14. Circadian rhythm in mRNA expression of the glutathione synthesis gene

15. Accelerated food source location in aging Drosophila

16. Circadian deep sequencing reveals stress-response genes that adopt robust rhythmic expression during aging

17. Circadian Clock Regulates Response to Pesticides in Drosophila via Conserved Pdp1 Pathway

18. The circadian clock gene period extends healthspan in aging Drosophila melanogaster

19. Aging alters circadian regulation of redox in Drosophila

20. Circadian regulation of glutathione levels and biosynthesis in Drosophila melanogaster

21. Loss of circadian clock accelerates aging in neurodegeneration-prone mutants

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