The Clock:Cycle complex is a major transcriptional regulator of Drosophila photoreceptors that protects the eye from retinal degeneration and oxidative stress

Author:

Jauregui-Lozano JuanORCID,Hall HanaORCID,Stanhope Sarah C.ORCID,Bakhle KimayaORCID,Marlin Makayla M.,Weake Vikki M.ORCID

Abstract

The aging eye experiences physiological changes that include decreased visual function and increased risk of retinal degeneration. Although there are transcriptomic signatures in the aging retina that correlate with these physiological changes, the gene regulatory mechanisms that contribute to cellular homeostasis during aging remain to be determined. Here, we integrated ATAC-seq and RNA-seq data to identify 57 transcription factors that showed differential activity in aging Drosophila photoreceptors. These 57 age-regulated transcription factors include two circadian regulators, Clock and Cycle, that showed sustained increased activity during aging. When we disrupted the Clock:Cycle complex by expressing a dominant negative version of Clock (ClkDN) in adult photoreceptors, we observed changes in expression of 15–20% of genes including key components of the phototransduction machinery and many eye-specific transcription factors. Using ATAC-seq, we showed that expression of ClkDN in photoreceptors leads to changes in activity of 37 transcription factors and causes a progressive decrease in global levels of chromatin accessibility in photoreceptors. Supporting a key role for Clock-dependent transcription in the eye, expression of ClkDN in photoreceptors also induced light-dependent retinal degeneration and increased oxidative stress, independent of light exposure. Together, our data suggests that the circadian regulators Clock and Cycle act as neuroprotective factors in the aging eye by directing gene regulatory networks that maintain expression of the phototransduction machinery and counteract oxidative stress.

Funder

National Eye Institute

Purdue University

National Institutes of Health

Publisher

Public Library of Science (PLoS)

Subject

Cancer Research,Genetics (clinical),Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference97 articles.

1. The aging of the retina;S Bonnel;Experimental Gerontology,2003

2. Aging of the Retina: Molecular and Metabolic Turbulences and Potential Interventions.;L Campello;Annu Rev Vis Sci.,2021

3. Transcriptome profiling of aging Drosophila photoreceptors reveals gene expression trends that correlate with visual senescence;H Hall;BMC Genomics,2017

4. The Hallmarks of Aging.;C López-Otín;Cell,2013

5. Distinct signature of altered homeostasis in aging rod photoreceptors: implications for retinal diseases.;SK Parapuram;PLoS One,2010

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